The Optoelectronic Nose: Colorimetric and Fluorometric Sensor Arrays.
暂无分享,去创建一个
[1] Susan J. Quinn,et al. Recent developments in the field of supramolecular lanthanide luminescent sensors and self-assemblies , 2008 .
[2] Xi Zhang,et al. Supramolecular amphiphiles. , 2011, Chemical Society reviews.
[3] Kalpana Besar,et al. Electrochemical processes and mechanistic aspects of field-effect sensors for biomolecules. , 2015, Journal of materials chemistry. C.
[4] María Pedrero,et al. Magnetic Beads‐Based Electrochemical Sensors Applied to the Detection and Quantification of Bioterrorism/Biohazard Agents , 2011, Electroanalysis.
[5] Yongxin Li,et al. Fluorescence turn-on detection of glucose via the Ag nanoparticle mediated release of a perylene probe. , 2015, Chemical communications.
[6] Silvana Andreescu,et al. Portable Colorimetric Paper-Based Biosensing Device for the Assessment of Bisphenol A in Indoor Dust. , 2015, Environmental science & technology.
[7] Ryan T. K. Kwok,et al. Aggregation-Induced Emission: Together We Shine, United We Soar! , 2015, Chemical reviews.
[8] Hao Li,et al. Rapid Quantification of Trimethylamine. , 2016, Analytical chemistry.
[9] Jitendriya Swain,et al. Location, Partitioning Behavior, and Interaction of Capsaicin with Lipid Bilayer Membrane: Study Using Its Intrinsic Fluorescence. , 2015, The journal of physical chemistry. B.
[10] Jinquan Yang,et al. Electrochemical sensor for rapid detection of triclosan using a multiwall carbon nanotube film. , 2009, Journal of agricultural and food chemistry.
[11] W. Lau,et al. Detection of contaminants in water supply: A review on state-of-the-art monitoring technologies and their applications , 2017, Sensors and Actuators B: Chemical.
[12] E. Ferapontova,et al. DNA interactions with a Methylene Blue redox indicator depend on the DNA length and are sequence specific. , 2010, The Analyst.
[13] D. Walt,et al. Multiplexed salivary protein profiling for patients with respiratory diseases using fiber-optic bundles and fluorescent antibody-based microarrays. , 2013, Analytical chemistry.
[14] Differentiation and Identification of Cachaça Wood Extracts Using Peptide-Based Receptors and Multivariate Data Analysis. , 2017, ACS sensors.
[15] R. Paolesse,et al. Porphyrinoids for Chemical Sensor Applications. , 2017, Chemical reviews.
[16] R. Clarke,et al. Coffee: Recent Developments , 2001 .
[17] Wenwan Zhong,et al. Self-Aggregating Deep Cavitand Acts as a Fluorescence Displacement Sensor for Lysine Methylation. , 2016, Journal of the American Chemical Society.
[18] Steven S Lumetta,et al. Multimode smartphone biosensing: the transmission, reflection, and intensity spectral (TRI)-analyzer. , 2017, Lab on a chip.
[19] Chad A Mirkin,et al. Nanostructures in biodiagnostics. , 2005, Chemical reviews.
[20] Tarek Mekhail,et al. Exhaled Breath Analysis with a Colorimetric Sensor Array for the Identification and Characterization of Lung Cancer , 2012, Journal of thoracic oncology : official publication of the International Association for the Study of Lung Cancer.
[21] Margaret E. Kosal,et al. Seeing smells: Development of an optoelectronic nose , 2007 .
[22] Florian Bender,et al. Identification and quantification of aqueous aromatic hydrocarbons using SH-surface acoustic wave sensors. , 2014, Analytical chemistry.
[23] Mingzeng Peng,et al. High-resolution dynamic pressure sensor array based on piezo-phototronic effect tuned photoluminescence imaging. , 2015, ACS nano.
[24] H. Wohltjen,et al. A vapor-sensitive chemiresistor fabricated with planar microelectrodes and a Langmuir-Blodgett organic semiconductor film , 1985, IEEE Transactions on Electron Devices.
[25] I. Flament,et al. Coffee flavor chemistry , 2001 .
[26] Vincent M Rotello,et al. Array-based sensing with nanoparticles: 'chemical noses' for sensing biomolecules and cell surfaces. , 2010, Current opinion in chemical biology.
[27] V. Rotello,et al. Cell surface-based sensing with metallic nanoparticles. , 2015, Chemical Society reviews.
[28] M. Papi,et al. A protein corona-enabled blood test for early cancer detection. , 2017, Nanoscale.
[29] Claudia Caltagirone,et al. Applications of Supramolecular Anion Recognition. , 2015, Chemical reviews.
[30] H. Du,et al. Inkjet-printed optoelectronics. , 2017, Nanoscale.
[31] L. Trnková,et al. Nanoparticle-Based Immunochemical Biosensors and Assays: Recent Advances and Challenges. , 2017, Chemical reviews.
[32] M. W Gardner,et al. Artificial neural networks (the multilayer perceptron)—a review of applications in the atmospheric sciences , 1998 .
[33] Hengwei Lin,et al. Colorimetric sensor array for detection and identification of organophosphorus and carbamate pesticides. , 2015, Analytical chemistry.
[34] Neal A. Rakow,et al. A colorimetric sensor array for odour visualization , 2000, Nature.
[35] A. Araújo,et al. Optical sensors and biosensors based on sol-gel films. , 2007, Talanta.
[36] R. Doty,et al. The Neurology of Olfaction: Contents , 2009 .
[37] Xiaoling Hu,et al. Preparation of molecularly imprinted polymers using ion-pair dummy template imprinting and polymerizable ionic liquids , 2015 .
[38] Larry R. Dalton,et al. Polymer-based optical waveguides: Materials, processing, and devices , 2002 .
[39] Joseph M Azzarelli,et al. Nanowire Chemical/Biological Sensors: Status and a Roadmap for the Future. , 2015, Angewandte Chemie.
[40] S. Takeoka,et al. A ratiometric fluorescent molecular probe for visualization of mitochondrial temperature in living cells. , 2015, Chemical communications.
[41] Arben Merkoçi,et al. Paper-based sensors and assays: a success of the engineering design and the convergence of knowledge areas. , 2016, Lab on a chip.
[42] Junhui He,et al. CuO nanostructures as quartz crystal microbalance sensing layers for detection of trace hydrogen cyanide gas. , 2011, Environmental science & technology.
[43] M. Hansen,et al. A Cool Way to Live Long , 2013, Cell.
[44] K. Franz,et al. Probing oxidative stress: Small molecule fluorescent sensors of metal ions, reactive oxygen species, and thiols. , 2012, Coordination chemistry reviews.
[45] K. Persaud,et al. Analysis of discrimination mechanisms in the mammalian olfactory system using a model nose , 1982, Nature.
[46] Brian Taba,et al. Colorimetric Sensor Array Allows Fast Detection and Simultaneous Identification of Sepsis-Causing Bacteria in Spiked Blood Culture , 2013, Journal of Clinical Microbiology.
[47] David R. Walt,et al. Bead-based Fiber-Optic Arrays , 2000, Science.
[48] Eric V Anslyn,et al. A general approach to differential sensing using synthetic molecular receptors. , 2010, Current opinion in chemical biology.
[49] Linh H. Lieu,et al. Predicting the Composition of Red Wine Blends Using an Array of Multicomponent Peptide-Based Sensors , 2015, Molecules.
[50] J. Sessler,et al. Introduction: Expanded, Contracted, and Isomeric Porphyrins. , 2017, Chemical reviews.
[51] L. Prodi,et al. Electrogenerated chemiluminescence from metal complexes-based nanoparticles for highly sensitive sensors applications , 2018, Coordination Chemistry Reviews.
[52] Shoufang Xu,et al. Dummy molecularly imprinted polymers-capped CdTe quantum dots for the fluorescent sensing of 2,4,6-trinitrotoluene. , 2013, ACS applied materials & interfaces.
[53] M. Schoenfisch,et al. Electrochemical sensors. , 2008, Analytical chemistry.
[54] Silvana Andreescu,et al. Multiarray sensors with pattern recognition for the detection, classification, and differentiation of bacteria at subspecies and strain levels. , 2005, Analytical chemistry.
[55] Shannon E. Stitzel,et al. Artificial noses. , 2011, Annual review of biomedical engineering.
[56] Lin He,et al. Nanoparticles for bioanalysis. , 2003, Current opinion in chemical biology.
[57] Jianping Deng,et al. Construction of Molecularly Imprinted Polymer Microspheres by Using Helical Substituted Polyacetylene and Application in Enantio-Differentiating Release and Adsorption. , 2016, ACS applied materials & interfaces.
[58] David R. S. Cumming,et al. Nanophotonic Image Sensors , 2016, Small.
[59] F. Bǎnicǎ,et al. Chemical sensors and biosensors : fundamentals and applications , 2012 .
[60] M. Bruchez,et al. Immunofluorescent labeling of cancer marker Her2 and other cellular targets with semiconductor quantum dots , 2003, Nature Biotechnology.
[61] P. Beer,et al. Anion Recognition in Water: Recent Advances from a Supramolecular and Macromolecular Perspective , 2015, Angewandte Chemie.
[62] R. W. Sabnis. Handbook of Acid-Base Indicators , 2007 .
[63] William J Peveler,et al. Multichannel Detection and Differentiation of Explosives with a Quantum Dot Array. , 2016, ACS nano.
[64] Yang Mei,et al. A minimalist Chinese liquor identification system based on a colorimetric sensor array with multiple applications , 2017 .
[65] Liang Feng,et al. Discrimination of trace heavy-metal ions by filtration on sol-gel membrane arrays. , 2011, Chemistry.
[66] Mohamed Eddaoudi,et al. MOFs for the Sensitive Detection of Ammonia: Deployment of fcu-MOF Thin Films as Effective Chemical Capacitive Sensors. , 2017, ACS sensors.
[67] David R Walt,et al. Very high density sensing arrays. , 2008, Chemical reviews.
[68] L. Capitán-Vallvey,et al. Smartphone-based simultaneous pH and nitrite colorimetric determination for paper microfluidic devices. , 2014, Analytical chemistry.
[69] B. Luan,et al. High-Curvature Nanostructuring Enhances Probe Display for Biomolecular Detection. , 2017, Nano letters.
[70] Eric L. Miller,et al. Low cost smart phone diagnostics for food using paper-based colorimetric sensor arrays , 2017 .
[71] M. Karelson,et al. Quantitative measures of solvent polarity. , 2004, Chemical reviews.
[72] Joseph Wang,et al. Nanomaterial-based electrochemical detection of explosives: a review of recent developments , 2013 .
[73] Jun Feng Zhang,et al. Fluorescence and colorimetric chemosensors for fluoride-ion detection. , 2014, Chemical reviews.
[74] D. Walt,et al. Using Antigen-antibody Binding Kinetic Parameters to Understand Single-Molecule Array Immunoassay Performance. , 2016, Analytical chemistry.
[75] Sichun Zhang,et al. Colorimetric sensor array with unmodified noble metal nanoparticles for naked-eye detection of proteins and bacteria. , 2015, The Analyst.
[76] Eugenia Marqués-López,et al. Fluoride Anion Recognition by a Multifunctional Urea Derivative: An Experimental and Theoretical Study , 2016, Sensors.
[77] Y. Nitzan,et al. Identification of pathogenic bacteria in blood cultures: comparison between conventional and PCR methods. , 2009, Journal of microbiological methods.
[78] Kamal B. Dhungana,et al. BODIPY-Based Fluorescent Probes for Sensing Protein Surface-Hydrophobicity , 2015, Scientific Reports.
[79] K. Suslick,et al. Shape-Selective Discrimination of Small Organic Molecules , 2000 .
[80] M Kawazu,et al. Application of gradient-index fiber arrays to copying machines. , 1980, Applied optics.
[81] Weiguang Zhang,et al. New poly(N,N-dimethylaminoethyl methacrylate)/polyvinyl alcohol copolymer coated QCM sensor for interaction with CWA simulants. , 2012, ACS applied materials & interfaces.
[82] S. Sasaki,et al. pH-independent fluorescent chemosensor for highly selective lithium ion sensing. , 2007, Analytical chemistry.
[83] Weihong Zhu,et al. Development of Ion Chemosensors Based on Porphyrin Analogues. , 2017, Chemical reviews.
[84] Derek Tseng,et al. Fluorescent imaging of single nanoparticles and viruses on a smart phone. , 2013, ACS nano.
[85] Andreas Herrmann,et al. A Hypothesis-Free Sensor Array Discriminates Whiskies for Brand, Age, and Taste , 2017 .
[86] Chih-Jen Lin,et al. LIBSVM: A library for support vector machines , 2011, TIST.
[87] Eric V. Anslyn,et al. Differential sensing for the regio- and stereoselective identification and quantitation of glycerides , 2015, Proceedings of the National Academy of Sciences.
[88] Kenneth S Suslick,et al. Colorimetric detection and identification of natural and artificial sweeteners. , 2009, Analytical chemistry.
[89] Xian‐Ming Zhang,et al. A Luminescent Zinc(II) Metal-Organic Framework (MOF) with Conjugated π-Electron Ligand for High Iodine Capture and Nitro-Explosive Detection. , 2016, Inorganic chemistry.
[90] Sichun Zhang,et al. Hydrogen sulfide detection based on reflection: from a poison test approach of ancient China to single-cell accurate localization. , 2014, Analytical chemistry.
[91] Aydogan Ozcan,et al. Highly Stable and Sensitive Nucleic Acid Amplification and Cell-Phone-Based Readout. , 2017, ACS nano.
[92] E. Boyden,et al. High-resolution imaging of cellular dopamine efflux using a fluorescent nanosensor array , 2017, Proceedings of the National Academy of Sciences.
[93] Avijit Sen,et al. Towards the development of a portable device for the monitoring of gaseous toxic industrial chemicals based on a chemical sensor array , 2008 .
[94] Fernando A. Silva. Smart Sensors and MEMS: Intelligent Devices and Microsystems for Industrial Applications [Book News] , 2014, IEEE Industrial Electronics Magazine.
[95] Brian Taba,et al. The Use of Colorimetric Sensor Arrays to Discriminate between Pathogenic Bacteria , 2013, PloS one.
[96] Jianlin Shi,et al. Rapid and Specific Aqueous-Phase Detection of Nitroaromatic Explosives with Inherent Porphyrin Recognition Sites in Metal-Organic Frameworks. , 2015, ACS applied materials & interfaces.
[97] O. Wolfbeis,et al. Optical biosensors. , 2008, Chemical reviews.
[98] Dai Fukumura,et al. Micelle-Encapsulated Quantum Dot-Porphyrin Assemblies as in Vivo Two-Photon Oxygen Sensors. , 2015, Journal of the American Chemical Society.
[99] Mark Byrnes,et al. Nuclear, Chemical, and Biological Terrorism: Emergency Response and Public Protection , 2003 .
[100] T. Nelson,et al. A food freshness sensor using the multistate response from analyte-induced aggregation of a cross-reactive poly(thiophene). , 2007, Organic letters.
[101] Jouko Kankare,et al. Method for measuring the losses and loading of a quartz crystal microbalance. , 2006, Analytical chemistry.
[102] Liang Feng,et al. A simple and highly sensitive colorimetric detection method for gaseous formaldehyde. , 2010, Journal of the American Chemical Society.
[103] Lucas Blanes,et al. Simultaneous colorimetric detection of improvised explosive compounds using microfluidic paper-based analytical devices (μPADs) , 2015 .
[104] M. Mahmoudi,et al. Slight temperature changes affect protein affinity and cellular uptake/toxicity of nanoparticles. , 2013, Nanoscale.
[105] Kinam Kim,et al. Gated three-terminal device architecture to eliminate persistent photoconductivity in oxide semiconductor photosensor arrays. , 2012, Nature materials.
[106] Wei Feng,et al. Ultrasensitive near-infrared fluorescence-enhanced probe for in vivo nitroreductase imaging. , 2015, Journal of the American Chemical Society.
[107] Nataliya V. Roznyatovskaya,et al. Conducting polymers in chemical sensors and arrays. , 2008, Analytica chimica acta.
[108] Avijit Sen,et al. Low-cost colorimetric sensor for the quantitative detection of gaseous hydrogen sulfide , 2008 .
[109] Abhishek Kumar,et al. Phthalocyanines based QCM sensors for aromatic hydrocarbons monitoring: Role of metal atoms and substituents on response to toluene , 2016 .
[110] E. Bakker,et al. Complexometric titrations: new reagents and concepts to overcome old limitations. , 2016, The Analyst.
[111] Neal A. Rakow,et al. Synthetic hosts by monomolecular imprinting inside dendrimers , 2002, Nature.
[112] Eric V Anslyn,et al. In-situ generation of differential sensors that fingerprint kinases and the cellular response to their expression. , 2013, Journal of the American Chemical Society.
[113] Yi‐Pin Chang,et al. Biomolecular interactions and tools for their recognition: focus on the quartz crystal microbalance and its diverse surface chemistries and applications. , 2012, Chemical Society reviews.
[114] P. Mazzone,et al. The combined rapid detection and species-level identification of yeasts in simulated blood culture using a colorimetric sensor array , 2017, PloS one.
[115] Nicolae Barsan,et al. Response of Gallium Nitride Chemiresistors to Carbon Monoxide is Due to Oxygen Contamination. , 2017, ACS sensors.
[116] Lei You,et al. Recent Advances in Supramolecular Analytical Chemistry Using Optical Sensing. , 2015, Chemical reviews.
[117] Vincent M. Rotello,et al. Cell surface-based differentiation of cell types and cancer states using a gold nanoparticle-GFP based sensing array , 2010 .
[118] Liang Feng,et al. Enhancement of sensitivity of paper-based sensor array for the identification of heavy-metal ions. , 2013, Analytica chimica acta.
[119] Kenneth S Suslick,et al. Colorimetric sensor arrays for volatile organic compounds. , 2006, Analytical chemistry.
[120] Jaclyn A. Adkins,et al. Recent developments in paper-based microfluidic devices. , 2015, Analytical chemistry.
[121] H. Matsunami,et al. The role of metals in mammalian olfaction of low molecular weight organosulfur compounds. , 2017, Natural product reports.
[122] Anja Walter,et al. Principles Of Chemical Sensors , 2016 .
[123] Ernesto Illy,et al. The complexity of coffee. , 2002, Scientific American.
[124] O. Wolfbeis. An overview of nanoparticles commonly used in fluorescent bioimaging. , 2015, Chemical Society reviews.
[125] K. Suslick,et al. Colorimetric sensor arrays for the analysis of beers: a feasibility study. , 2006, Journal of agricultural and food chemistry.
[126] Scott R. Wilson,et al. A four-coordinate Fe(III) porphyrin cation. , 2008, Journal of the American Chemical Society.
[127] Wenping Hu,et al. Organic field-effect transistor-based gas sensors. , 2015, Chemical Society reviews.
[128] Xiangfeng Duan,et al. Functional Three-Dimensional Graphene/Polymer Composites. , 2016, ACS nano.
[129] M. M. Fox,et al. Shape-selective alkane hydroxylation , 1985 .
[130] Dong Xu,et al. Discriminant analysis with tensor representation , 2005, 2005 IEEE Computer Society Conference on Computer Vision and Pattern Recognition (CVPR'05).
[131] Chengzhou Zhu,et al. Electrochemical Sensors and Biosensors Based on Nanomaterials and Nanostructures , 2014, Analytical chemistry.
[132] R. Pérez-Ruíz,et al. Computational study on fluoride recognition by an urea-activated phthalimide chemosensor , 2012 .
[133] David R Walt,et al. Monitoring "promiscuous" drug effects on single cells of multiple cell types. , 2005, Analytical biochemistry.
[134] Terence G. Henares,et al. Paper-based inkjet-printed microfluidic analytical devices. , 2015, Angewandte Chemie.
[135] Takamichi Nakamoto,et al. Chemical sensing in spatial/temporal domains. , 2008, Chemical reviews.
[136] Shannon E. Stitzel,et al. Cross-reactive chemical sensor arrays. , 2000, Chemical reviews.
[137] Antje Sommer,et al. Principles Of Fluorescence Spectroscopy , 2016 .
[138] L. Selmi,et al. Real-time imaging of microparticles and living cells with CMOS nanocapacitor arrays. , 2015, Nature nanotechnology.
[139] N. Woodford,et al. Infections caused by Gram-positive bacteria: a review of the global challenge. , 2009, The Journal of infection.
[140] Eka Noviana,et al. Paper-Based Microfluidic Devices: Emerging Themes and Applications. , 2017, Analytical chemistry.
[141] Xiaqing Wu,et al. Molecular imprinting: perspectives and applications. , 2016, Chemical Society reviews.
[142] P. Anzenbacher,et al. Small-Molecule Turn-On Fluorescent Probes for RDX. , 2015, Journal of the American Chemical Society.
[143] Claudio Rottman,et al. Surfactant-Induced Modification of Dopants Reactivity in Sol−Gel Matrixes , 1999 .
[144] Desire L. Massart,et al. The Interpretation of Analytical Chemical Data by the Use of Cluster Analysis , 1983 .
[145] David R Walt,et al. Fibre optic microarrays. , 2010, Chemical Society reviews.
[146] M. Landry,et al. A Probe for the Detection of Hypoxic Cancer Cells. , 2017, ACS sensors.
[147] Martin Moskovits,et al. Electromagnetic theories of surface-enhanced Raman spectroscopy. , 2017, Chemical Society reviews.
[148] Michael Famulok,et al. Aptamer modules as sensors and detectors. , 2011, Accounts of chemical research.
[149] I. McKelvie,et al. Development of a gas-diffusion microfluidic paper-based analytical device (μPAD) for the determination of ammonia in wastewater samples. , 2015, Analytical chemistry.
[150] Sascha Sauer,et al. Mass spectrometry tools for the classification and identification of bacteria , 2010, Nature Reviews Microbiology.
[151] L. Xu,et al. Theoretical study on temperature dependence of cellular uptake of QDs nanoparticles. , 2011, Journal of biomechanical engineering.
[152] Sarit S. Agasti,et al. Gold nanoparticles in chemical and biological sensing. , 2012, Chemical reviews.
[153] Félix Sancenón,et al. Chromogenic and fluorogenic chemosensors and reagents for anions. A comprehensive review of the years 2010-2011. , 2011, Chemical Society reviews.
[154] Ganesh Kumar Mani,et al. Electronic noses for food quality : a review , 2015 .
[155] Dan Wu,et al. Label-Free Electrochemiluminescent Immunosensor for Detection of Carcinoembryonic Antigen Based on Nanocomposites of GO/MWCNTs-COOH/Au@CeO₂. , 2015, ACS applied materials & interfaces.
[156] Hildegarde Heymann,et al. Pattern-based discrimination of organic acids and red wine varietals by arrays of synthetic receptors , 2012 .
[157] A. Hoang,et al. A strip array of colorimetric sensors for visualizing a concentration level of gaseous analytes with basicity , 2017 .
[158] Chen Zhang,et al. Colorimetric sensor array for soft drink analysis. , 2007, Journal of agricultural and food chemistry.
[159] Eun Jeong Cho,et al. Applications of aptamers as sensors. , 2009, Annual review of analytical chemistry.
[160] Ping Li,et al. A fluorescence nanosensor for glycoproteins with activity based on the molecularly imprinted spatial structure of the target and boronate affinity. , 2014, Angewandte Chemie.
[161] Wenxuan Zhong,et al. A colorimetric sensor array for detection and identification of sugars. , 2008, Organic letters.
[162] Kenneth S Suslick,et al. Synesthesia in science and technology: more than making the unseen visible. , 2012, Current opinion in chemical biology.
[163] X. Qu,et al. Cancer biomarker detection: recent achievements and challenges. , 2015, Chemical Society reviews.
[164] Ulrike Tisch,et al. Chemical sensors for breath gas analysis: the latest developments at the Breath Analysis Summit 2013 , 2014, Journal of breath research.
[165] R. Kurita,et al. Artificial Modification of an Enzyme for Construction of Cross-Reactive Polyion Complexes To Fingerprint Signatures of Proteins and Mammalian Cells. , 2016, Analytical chemistry.
[166] O. Wolfbeis,et al. Referenced luminescent sensing and imaging with digital color cameras: A comparative study , 2013 .
[167] E. Stathatos,et al. Electrochromic properties of thin nanocrystalline TiO2 films coated electrodes with adsorbed Co(II) or Fe(II) 2,2′-bipyridine complexes , 2017 .
[168] Maria K. LaGasse,et al. An optoelectronic nose for identification of explosives , 2015 .
[169] Nagy L. Torad,et al. Quartz crystal microbalance sensor coated with polyaniline emeraldine base for determination of chlorinated aliphatic hydrocarbons , 2008 .
[170] A. Afzal,et al. Advanced vapor recognition materials for selective and fast responsive surface acoustic wave sensors: a review. , 2013, Analytica chimica acta.
[171] Jianjun Cheng,et al. Protein corona significantly reduces active targeting yield. , 2013, Chemical communications.
[172] J. Sessler,et al. Supramolecular Chemistry of Anionic Dimers, Trimers, Tetramers and Clusters. , 2018, Chem.
[173] Subinoy Rana,et al. Gold nanoparticle-polymer/biopolymer complexes for protein sensing. , 2011, Faraday discussions.
[174] Young‐Tae Chang,et al. Focused fluorescent probe library for metal cations and biological anions. , 2013, ACS combinatorial science.
[175] I. Cheng,et al. Electrochemical detection of triacetone triperoxide employing the electrocatalytic reaction of iron(II/III)-ethylenediaminetetraacetate and hydrogen peroxide. , 2008, Analytica chimica acta.
[176] W. Dehaen,et al. Fluorescent indicators based on BODIPY. , 2012, Chemical Society reviews.
[177] R. Sakai. Conjugated polymers applicable to colorimetric and fluorescent anion detection , 2016 .
[178] Subinoy Rana,et al. Array-based sensing of metastatic cells and tissues using nanoparticle-fluorescent protein conjugates. , 2012, ACS nano.
[179] Y. Ozaki,et al. Surface-Enhanced Raman Spectroscopy , 2005 .
[180] Jonathan L Sessler,et al. Small molecule-based ratiometric fluorescence probes for cations, anions, and biomolecules. , 2015, Chemical Society reviews.
[181] Vincent M Rotello,et al. Array-based sensing using nanoparticles: an alternative approach for cancer diagnostics. , 2014, Nanomedicine.
[182] K. Suslick,et al. Shape-Selective Ligation to Dendrimer−Metalloporphyrins , 1999 .
[183] Philip A. Gale,et al. Anion Receptor Chemistry , 2016 .
[184] R. Capuano,et al. Solid-state gas sensors for breath analysis: a review. , 2014, Analytica chimica acta.
[185] F. Patolsky,et al. Antigen-Dissociation from Antibody-Modified Nanotransistor Sensor Arrays as a Direct Biomarker Detection Method in Unprocessed Biosamples. , 2016, Nano letters.
[186] Jon R. Askim,et al. Identification of pathogenic fungi with an optoelectronic nose. , 2014, The Analyst.
[187] Alexander M. Jones,et al. Quantitative imaging with fluorescent biosensors. , 2012, Annual review of plant biology.
[188] V. Rotello,et al. Polymer - Nanoparticle Assemblies for Array Based Sensing. , 2015, Current organic chemistry.
[189] Michael Eiden,et al. Rapid Diagnosis of Tuberculosis from Analysis of Urine Volatile Organic Compounds. , 2016, ACS sensors.
[190] O. Wenger,et al. Vapochromism in organometallic and coordination complexes: chemical sensors for volatile organic compounds. , 2013, Chemical reviews.
[191] E. Dalcanale,et al. Supramolecular sensing with phosphonate cavitands. , 2013, Accounts of chemical research.
[192] H. Fredriksson,et al. Enhanced nanoplasmonic optical sensors with reduced substrate effect. , 2008, Nano letters.
[193] F ROSENBLATT,et al. The perceptron: a probabilistic model for information storage and organization in the brain. , 1958, Psychological review.
[194] S. Bhansali,et al. Organic-inorganic hybrid nanocomposite-based gas sensors for environmental monitoring. , 2015, Chemical reviews.
[195] Yu Qin,et al. Paper-based plasticizer-free sodium ion-selective sensor with camera phone as a detector. , 2015, Chemical communications.
[196] Avijit Sen,et al. Colorimetric sensor arrays for molecular recognition , 2004 .
[197] Katharine L. Diehl,et al. Differential sensing of oils by conjugates of serum albumins and 9,10-distyrylanthracene probes: a cautionary tale , 2017 .
[198] K. Suslick,et al. Ultrasonic Preparation of Porous Silica-Dye Microspheres: Sensors for Quantification of Urinary Trimethylamine N-Oxide. , 2018, ACS applied materials & interfaces.
[199] Robert H Newman,et al. Genetically encodable fluorescent biosensors for tracking signaling dynamics in living cells. , 2011, Chemical reviews.
[200] P. M. Krishna,et al. Label-free optical biosensors for food and biological sensor applications , 2018, Sensors and Actuators B: Chemical.
[201] Timothy M Swager,et al. Wireless gas detection with a smartphone via rf communication , 2014, Proceedings of the National Academy of Sciences.
[202] H. Salavagione,et al. Chemical sensors based on polymer composites with carbon nanotubes and graphene: the role of the polymer , 2014 .
[203] Judith Wackerlig,et al. Applications of Molecularly Imprinted Polymer Nanoparticles and Their Advances toward Industrial Use: A Review. , 2016, Analytical chemistry.
[204] Liang Feng,et al. Colorimetric sensor array for determination and identification of toxic industrial chemicals. , 2010, Analytical chemistry.
[205] Jessica E Fitzgerald,et al. Artificial Nose Technology: Status and Prospects in Diagnostics. , 2017, Trends in biotechnology.
[206] David R Walt,et al. Dynamic microbead arrays for biosensing applications. , 2013, Lab on a chip.
[207] Gregory Piatetsky-Shapiro,et al. High-Dimensional Data Analysis: The Curses and Blessings of Dimensionality , 2000 .
[208] José Pedro Santos,et al. Electronic nose for wine ageing detection , 2008 .
[209] K. Carroll,et al. Blood cultures: key elements for best practices and future directions , 2010, Journal of infection and chemotherapy : official journal of the Japan Society of Chemotherapy.
[210] Avijit Sen,et al. Rapid identification of bacteria with a disposable colorimetric sensing array. , 2011, Journal of the American Chemical Society.
[211] Daniel Citterio,et al. Inkjet-printed paper-based colorimetric sensor array for the discrimination of volatile primary amines. , 2013, Analytical chemistry.
[212] K. Nassau,et al. The Physics and Chemistry of Color , 1985 .
[213] I. Willner,et al. Electronic aptamer-based sensors. , 2007, Angewandte Chemie.
[214] Vincent M. Rotello,et al. Enzyme-amplified array sensing of proteins in solution and in biofluids. , 2010, Journal of the American Chemical Society.
[215] J. Catalán. Toward a generalized treatment of the solvent effect based on four empirical scales: dipolarity (SdP, a new scale), polarizability (SP), acidity (SA), and basicity (SB) of the medium. , 2009, The journal of physical chemistry. B.
[216] Younan Xia,et al. Gold Nanomaterials at Work in Biomedicine. , 2015, Chemical reviews.
[217] Subinoy Rana,et al. Ratiometric Array of Conjugated Polymers-Fluorescent Protein Provides a Robust Mammalian Cell Sensor. , 2016, Journal of the American Chemical Society.
[218] Juan Tang,et al. Displacement-type quartz crystal microbalance immunosensing platform for ultrasensitive monitoring of small molecular toxins. , 2013, Analytical chemistry.
[219] J. Hofkens,et al. Tunable Ratiometric Fluorescence Sensing of Intracellular pH by Aggregation-Induced Emission-Active Hyperbranched Polymer Nanoparticles , 2015 .
[220] Kenneth S. Suslick,et al. Is the olfactory receptor a metalloprotein? , 2003, Proceedings of the National Academy of Sciences of the United States of America.
[221] Raymond A Martino,et al. Bacterial culture detection and identification in blood agar plates with an optoelectronic nose. , 2016, The Analyst.
[222] Hengwei Lin,et al. A colorimetric sensor array for detection of triacetone triperoxide vapor. , 2010, Journal of the American Chemical Society.
[223] Xiang Zhang,et al. Subcellular resolution mapping of endogenous cytokine secretion by nano-plasmonic-resonator sensor array. , 2011, Nano letters.
[224] William R. Dichtel,et al. Direct detection of RDX vapor using a conjugated polymer network. , 2013, Journal of the American Chemical Society.
[225] W. Tan,et al. Efficient Two-Photon Fluorescent Probe for Nitroreductase Detection and Hypoxia Imaging in Tumor Cells and Tissues. , 2015, Analytical chemistry.
[226] C. Hunter,et al. Detection of volatile organic compounds using porphyrin derivatives. , 2010, The journal of physical chemistry. B.
[227] D. Cliffel,et al. Electrochemical sensors and biosensors. , 2012, Analytical chemistry.
[228] Andrew D. Ellington,et al. Exploration of plasticizer and plastic explosive detection and differentiation with serum albumin cross-reactive arrays , 2012 .
[229] Weisheng Liu,et al. BODIPY-derived piperazidine fluorescent near-neutral pH indicator and its bioimaging , 2016 .
[230] Jeffrey N. Anker,et al. Biosensing with plasmonic nanosensors. , 2008, Nature materials.
[231] Yongming Guo,et al. Fluorescent copper nanoparticles: recent advances in synthesis and applications for sensing metal ions. , 2016, Nanoscale.
[232] D. Walt,et al. Single-Molecule Arrays for Protein and Nucleic Acid Analysis. , 2017, Annual review of analytical chemistry.
[233] A. Torriero,et al. Application of ionic liquids in electrochemical sensing systems. , 2011, Biosensors & bioelectronics.
[234] Yuexiang Lu,et al. A smartphone readable colorimetric sensing platform for rapid multiple protein detection. , 2017, The Analyst.
[235] Rosaleen J. Anderson,et al. Methods for the detection and identification of pathogenic bacteria: past, present, and future. , 2017, Chemical Society reviews.
[236] L. Prodi,et al. Luminescent chemosensors based on silica nanoparticles. , 2011, Topics in current chemistry.
[237] I. McKelvie,et al. Developments of microfluidic paper-based analytical devices (μPADs) for water analysis: A review. , 2018, Talanta.
[238] Hengwei Lin,et al. Preoxidation for colorimetric sensor array detection of VOCs. , 2011, Journal of the American Chemical Society.
[239] P. Glenn Gulak,et al. Rapid Bacterial Detection via an All-Electronic CMOS Biosensor , 2016, PloS one.
[240] Zijian Guo,et al. Metal coordination in photoluminescent sensing. , 2013, Chemical Society reviews.
[241] J. L. Harrison,et al. The Government Printing Office , 1968, American Journal of Pharmaceutical Education.
[242] Steve Feng,et al. Rapid imaging, detection and quantification of Giardia lamblia cysts using mobile-phone based fluorescent microscopy and machine learning. , 2015, Lab on a chip.
[243] Zhanfang Ma,et al. A review on amperometric immunoassays for tumor markers based on the use of hybrid materials consisting of conducting polymers and noble metal nanomaterials , 2017, Microchimica Acta.
[244] R. Kosloff,et al. Novel Approach to the Detection of Triacetone Triperoxide (TATP): Its Structure and Its Complexes with Ions , 2002 .
[245] G. Wegner,et al. Solvatochromism of dye-labeled dendronized polymers of generation numbers 1–4: comparison to dendrimers† †Electronic supplementary information (ESI) available: Experimental procedures, characterization data, UV-Vis data and spectra, and data on MD simulations. See DOI: 10.1039/c5sc04609b , 2016, Chemical science.
[246] H. Haick,et al. Sensors for breath testing: from nanomaterials to comprehensive disease detection. , 2014, Accounts of chemical research.
[247] Hongying Zhu,et al. Calling Biomarkers in Milk Using a Protein Microarray on Your Smartphone , 2015, PloS one.
[248] Liang Feng,et al. Discrimination of complex mixtures by a colorimetric sensor array: coffee aromas. , 2010, Analytical chemistry.
[249] S. Cosnier,et al. Enhanced Electrochemiluminescence of One-Dimensional Self-Assembled Porphyrin Hexagonal Nanoprisms. , 2017, ACS applied materials & interfaces.
[250] Chih-Ching Huang,et al. Selective gold-nanoparticle-based "turn-on" fluorescent sensors for detection of mercury(II) in aqueous solution. , 2006, Analytical chemistry.
[251] Abraham J. Qavi,et al. Nanostructured Substrates for Optical Sensing. , 2011, The journal of physical chemistry letters.
[252] P. Anzenbacher,et al. Intramolecular indicator displacement assay for anions: supramolecular sensor for glyphosate. , 2014, Journal of the American Chemical Society.
[253] Holly A Yu,et al. Detection of 2,4,6-Trinitrotoluene Using a Miniaturized, Disposable Electrochemical Sensor with an Ionic Liquid Gel-Polymer Electrolyte Film. , 2017, Analytical chemistry.
[254] Chunhai Fan,et al. Nanomaterials-based sensors for applications in environmental monitoring , 2012 .
[255] George M. Whitesides,et al. FEED-FORWARD NEURAL NETWORKS IN CHEMISTRY : MATHEMATICAL SYSTEMS FOR CLASSIFICATION AND PATTERN RECOGNITION , 1993 .
[256] David W. Greve,et al. SAW Sensors for Chemical Vapors and Gases , 2017, Sensors.
[257] S. Yousefinejad,et al. New relationship models for solvent–pyrene solubility based on molecular structure and empirical properties , 2016 .
[258] Subinoy Rana,et al. Sensing of proteins in human serum using conjugates of nanoparticles and green fluorescent protein. , 2009, Nature chemistry.
[259] Jon R. Askim,et al. Identification of accelerants, fuels and post-combustion residues using a colorimetric sensor array. , 2015, The Analyst.
[260] Otto S. Wolfbeis,et al. Electropolymerized Molecularly Imprinted Polymers as Receptor Layers in Capacitive Chemical Sensors , 1999 .
[261] Suming Chen,et al. Lysosomal pH rise during heat shock monitored by a lysosome-targeting near-infrared ratiometric fluorescent probe. , 2014, Angewandte Chemie.
[262] Philip M. Kelly,et al. Transferrin-functionalized nanoparticles lose their targeting capabilities when a biomolecule corona adsorbs on the surface. , 2013, Nature nanotechnology.
[263] Yufang Xu,et al. A new prodrug-derived ratiometric fluorescent probe for hypoxia: high selectivity of nitroreductase and imaging in tumor cell. , 2011, Organic letters.
[264] Steve Feng,et al. Cellphone-Based Hand-Held Microplate Reader for Point-of-Care Testing of Enzyme-Linked Immunosorbent Assays. , 2015, ACS nano.
[265] Colette McDonagh,et al. Optical chemical sensors. , 2008, Chemical reviews.
[266] Adil Denizli,et al. Quartz crystal microbalance based biosensors for detecting highly metastatic breast cancer cells via their transferrin receptors , 2016 .
[267] Ramón Martínez-Máñez,et al. Monitoring of chicken meat freshness by means of a colorimetric sensor array. , 2012, The Analyst.
[268] Divyanshu,et al. Milk quality control: instant and quantitative milk fat determination with a BODIPY sensor-based fluorescence detector. , 2014, Chemical communications.
[269] J. Schmuckler. Acid base indicators , 1982 .
[270] C. Bayne. Practical Guide to Chemometrics , 1995 .
[271] Vincent M Rotello,et al. Detection and identification of proteins using nanoparticle-fluorescent polymer 'chemical nose' sensors. , 2007, Nature nanotechnology.
[272] Jianjun Du,et al. Fluorescent chemodosimeters using "mild" chemical events for the detection of small anions and cations in biological and environmental media. , 2012, Chemical Society reviews.
[273] P. Mombaerts. Seven-transmembrane proteins as odorant and chemosensory receptors. , 1999, Science.
[274] Leandro Lorenzelli,et al. Recent sensing technologies for pathogen detection in milk: a review. , 2014, Biosensors & bioelectronics.
[275] Andrey S. Klymchenko,et al. Solvatochromic and Fluorogenic Dyes as Environment-Sensitive Probes: Design and Biological Applications. , 2017, Accounts of chemical research.
[276] Liang Feng,et al. A colorimetric sensor array of porous pigments. , 2009, The Analyst.
[277] K. Suslick,et al. Chemically responsive nanoporous pigments: colorimetric sensor arrays and the identification of aliphatic amines. , 2008, Langmuir : the ACS journal of surfaces and colloids.
[278] K. Suslick,et al. The synthetic analogs of O2-binding heme proteins , 1985 .
[279] Jing Li,et al. Luminescent Metal—Organic Frameworks for Chemical Sensing and Explosive Detection , 2014 .
[280] Carlos Alonso-Calleja,et al. Antibiotic-Resistant Bacteria: A Challenge for the Food Industry , 2013, Critical reviews in food science and nutrition.
[281] G. G. Stokes. "J." , 1890, The New Yale Book of Quotations.
[282] Christian Igel,et al. Cross-reactive metal ion sensor array in a micro titer plate format. , 2003, Analytical chemistry.
[283] Jiri Janata,et al. Chemical Sensors: An Introduction for Scientists and Engineers , 2007 .
[284] C. Hunter,et al. Quantifying intermolecular interactions: guidelines for the molecular recognition toolbox. , 2004, Angewandte Chemie.
[285] E. Kandel,et al. Internally ratiometric fluorescent sensors for evaluation of intracellular GTP levels and distribution , 2017, Nature Methods.
[286] Mohamed M. Chehimi,et al. Nanocomposites of Gold Nanoparticles@Molecularly Imprinted Polymers: Chemistry, Processing, and Applications in Sensors , 2015 .
[287] Neal A. Rakow,et al. Molecular imprinting inside dendrimers. , 2003, Journal of the American Chemical Society.
[288] Sara Stewart,et al. The use of principal component analysis and discriminant analysis in differential sensing routines. , 2014, Chemical Society reviews.
[289] K. Suslick,et al. Regioselective epoxidations of dienes with manganese(III) porphyrin catalysts , 1987 .
[290] N. Peppas,et al. Charged poly(N-isopropylacrylamide) nanogels for use as differential protein receptors in a turbidimetric sensor array. , 2017, The Analyst.
[291] J. Lima,et al. A thionine-based reversible redox sensor in a sequential injection system. , 2010, Analytica chimica acta.
[292] Xian‐Ming Zhang,et al. Simultaneous Luminescent Thermochromism, Vapochromism, Solvatochromism, and Mechanochromism in a C3-Symmetric Cubane [Cu4I4P4] Cluster without Cu-Cu Interaction. , 2016, Inorganic chemistry.
[293] Morteza Mahmoudi,et al. Themed Issue: Chemical and Biological Detection Chemical Society Reviews Optical Sensor Arrays for Chemical Sensing: the Optoelectronic Nose , 2022 .
[294] Paolo Montuschi,et al. The Electronic Nose in Respiratory Medicine , 2012, Respiration.
[295] C. Reichardt,et al. Solvatochromic Dyes as Solvent Polarity Indicators , 1994 .
[296] R. Seeber,et al. Polythiophenes and polythiophene-based composites in amperometric sensing , 2012, Analytical and Bioanalytical Chemistry.
[297] L. H. Andersen,et al. Origin of the Intrinsic Fluorescence of the Green Fluorescent Protein. , 2017, Journal of the American Chemical Society.
[298] Eric C. Nallon,et al. Quantum Dot and Polymer Composite Cross-Reactive Array for Chemical Vapor Detection. , 2015, Analytical chemistry.
[299] K. Dunbar,et al. Anion-π interactions in supramolecular architectures. , 2013, Accounts of chemical research.
[300] Nicholas P. West,et al. Naked-Eye Colorimetric and Electrochemical Detection of Mycobacterium tuberculosis—toward Rapid Screening for Active Case Finding , 2016 .
[301] Dong Sub Kim,et al. Calix[4]pyrroles: versatile molecular containers with ion transport, recognition, and molecular switching functions. , 2015, Chemical Society reviews.
[302] I. Klimant,et al. Fluorescent materials for pH sensing and imaging based on novel 1,4-diketopyrrolo-[3,4-c]pyrrole dyes , 2013, Journal of materials chemistry. C.
[303] P Hobza,et al. Noncovalent interactions: a challenge for experiment and theory. , 2000, Chemical reviews.
[304] Selena Sironi,et al. Electronic Noses for Environmental Monitoring Applications , 2014, Sensors.
[305] Oren A Scherman,et al. Cucurbituril-Based Molecular Recognition. , 2015, Chemical reviews.
[306] Kevin Burgess,et al. Fluorescent indicators for intracellular pH. , 2010, Chemical reviews.
[307] Félix Pariente,et al. Determination of Organophosphorus and Carbamate Pesticides Using a Piezoelectric Biosensor , 1998 .
[308] J. T. Marquês,et al. Application of Ratiometric Measurements and Microplate Fluorimetry to Protein Denaturation: An Experiment for Analytical and Biochemistry Students , 2013 .
[309] Maria K. LaGasse,et al. Colorimetric Recognition of Aldehydes and Ketones. , 2017, Angewandte Chemie.
[310] E. Benito-Peña,et al. Furfural Determination with Disposable Polymer Films and Smartphone-Based Colorimetry for Beer Freshness Assessment. , 2016, Analytical chemistry.
[311] James P. Collman,et al. Synthetic Models for Hemoglobin and Myoglobin , 1999 .
[312] Kenneth S Suslick,et al. A colorimetric sensor array for organics in water. , 2005, Journal of the American Chemical Society.
[313] J. Lakowicz. Principles of fluorescence spectroscopy , 1983 .
[314] Kenneth S Suslick,et al. Differential sensing of sugars by colorimetric arrays. , 2010, Current opinion in chemical biology.
[315] Susan Z. Hua,et al. An Overview of Recent Strategies in Pathogen Sensing , 2009, Sensors.
[316] N. Bârsan,et al. Electronic nose: current status and future trends. , 2008, Chemical reviews.
[317] F. Würthner,et al. A Perylene Bisimide Cyclophane as a "Turn-On" and "Turn-Off" Fluorescence Probe. , 2015, Angewandte Chemie.
[318] Subinoy Rana,et al. Cancer Cell Discrimination Using Host-Guest "Doubled" Arrays. , 2017, Journal of the American Chemical Society.
[319] Linda B Buck,et al. Unraveling the sense of smell (Nobel lecture). , 2005, Angewandte Chemie.
[320] M. Argyres,et al. Hospital-acquired infections due to gram-negative bacteria. , 2010, The New England journal of medicine.
[321] P. Mazzone,et al. Analysis of volatile organic compounds in the exhaled breath for the diagnosis of lung cancer. , 2008, Journal of thoracic oncology : official publication of the International Association for the Study of Lung Cancer.
[322] X. Wen,et al. Intrinsic and Extrinsic Fluorescence in Carbon Nanodots: Ultrafast Time‐Resolved Fluorescence and Carrier Dynamics , 2013 .
[323] Eric V. Anslyn,et al. Array sensing using optical methods for detection of chemical and biological hazards. , 2013, Chemical Society reviews.
[324] Kenneth S Suslick,et al. Nanoscale porosity in pigments for chemical sensing. , 2011, Nanoscale.
[325] Aldo Roda,et al. Smartphone-based biosensors: A critical review and perspectives , 2016 .
[326] E. Bakker,et al. Solvatochromic Dyes as pH-Independent Indicators for Ionophore Nanosphere-Based Complexometric Titrations. , 2015, Analytical chemistry.
[327] Kenneth S Suslick,et al. An Optoelectronic Nose: “Seeing” Smells by Means of Colorimetric Sensor Arrays , 2004, MRS bulletin.
[328] Michael Krausa,et al. Vapour and trace detection of explosives for anti-terroism purposes , 2004 .
[329] Aydogan Ozcan,et al. Cellphone-based devices for bioanalytical sciences , 2014, Analytical and Bioanalytical Chemistry.
[330] E. Kool,et al. DNA polyfluorophores as highly diverse chemosensors of toxic gases , 2011 .
[331] O. Wolfbeis,et al. Ultra-small, highly stable, and sensitive dual nanosensors for imaging intracellular oxygen and pH in cytosol. , 2012, Journal of the American Chemical Society.
[332] W. Parak,et al. In situ detection of the protein corona in complex environments , 2017, Nature Communications.
[333] Kenneth S Suslick,et al. A Hand-Held Optoelectronic Nose for the Identification of Liquors. , 2017, ACS sensors.
[334] C. Reichardt. Solvents and Solvent Effects in Organic Chemistry , 1988 .
[335] Eric V Anslyn,et al. Differential receptor arrays and assays for solution-based molecular recognition. , 2006, Chemical Society reviews.
[336] Liang Feng,et al. An Optoelectronic Nose for Detection of Toxic Gases , 2009, Nature chemistry.
[337] Thomas van Oordt,et al. A smartphone-based colorimetric reader for bioanalytical applications using the screen-based bottom illumination provided by gadgets. , 2015, Biosensors & bioelectronics.
[338] Honghong Wang,et al. Ratiometric Fluorescence Nanoprobes for Subcellular pH Imaging with a Single-Wavelength Excitation in Living Cells. , 2016, Analytical chemistry.
[339] Hildegarde Heymann,et al. Discrimination of flavonoids and red wine varietals by arrays of differential peptidic sensors , 2011 .
[340] Adil Denizli,et al. Colorimetric sensor array based on gold nanoparticles and amino acids for identification of toxic metal ions in water. , 2014, ACS applied materials & interfaces.
[341] K. Suslick,et al. Shape selective alkane hydroxylation by metalloporphyrin catalysts , 1987 .
[342] Neil G. Connelly,et al. Chemical Redox Agents for Organometallic Chemistry. , 1996, Chemical reviews.
[343] J. Pingarrón,et al. Chapter 13 Application of electrochemical enzyme biosensors for food quality control , 2007 .
[344] Michael A. Brook,et al. Design of Gold Nanoparticle‐Based Colorimetric Biosensing Assays , 2008, Chembiochem : a European journal of chemical biology.
[345] M. Schäferling. Nanoparticle-based luminescent probes for intracellular sensing and imaging of pH. , 2016, Wiley interdisciplinary reviews. Nanomedicine and nanobiotechnology.
[346] Derek Tseng,et al. Targeted DNA sequencing and in situ mutation analysis using mobile phone microscopy , 2017, Nature Communications.
[347] Kemin Wang,et al. Ratiometric fluorescent sensing of pH values in living cells by dual-fluorophore-labeled i-motif nanoprobes. , 2015, Analytical chemistry.
[348] Graphene-oxide-based immunosensing through fluorescence quenching by peroxidase-catalyzed polymerization. , 2012, Small.
[349] J. Carlson,et al. Olfactory Perception: Receptors, Cells, and Circuits , 2009, Cell.
[350] Yu Lei,et al. Colorimetric artificial tongue for protein identification. , 2011, Biosensors & bioelectronics.
[351] Haibo Zhou,et al. Instant visual detection of trinitrotoluene particulates on various surfaces by ratiometric fluorescence of dual-emission quantum dots hybrid. , 2011, Journal of the American Chemical Society.
[352] David R Walt,et al. Protein Counting in Single Cancer Cells. , 2016, Analytical chemistry.
[353] N. Altman,et al. On dimension folding of matrix- or array-valued statistical objects , 2010, 1002.4789.
[354] Sergey A. Piletsky,et al. Electrochemical Sensors Based on Molecularly Imprinted Polymers , 2002 .
[355] David R Walt,et al. Combinatorial decoding: an approach for universal DNA array fabrication. , 2003, Journal of the American Chemical Society.
[356] Raymond A Martino,et al. Detecting cancer by breath volatile organic compound analysis: a review of array-based sensors , 2014, Journal of breath research.
[357] Qingjun Liu,et al. Biosensors and bioelectronics on smartphone for portable biochemical detection. , 2016, Biosensors & bioelectronics.
[358] Subinoy Rana,et al. Surface functionalization of nanoparticles for nanomedicine. , 2012, Chemical Society reviews.
[359] J. Janata. Chemical sensors. , 1990, Analytical chemistry.
[360] S. Schlücker. Surface-enhanced Raman spectroscopy: concepts and chemical applications. , 2014, Angewandte Chemie.
[361] R. A. Shalliker. Hyphenated and alternative methods of detection in chromatography , 2011 .
[362] X. Hou,et al. Recent Progress in Chemiluminescence for Gas Analysis , 2010 .
[363] Tom Welton,et al. Solvents and Solvent Effects in Organic Chemistry: REICHARDT:SOLV.EFF. 4ED O-BK , 2010 .
[364] Woo-Sik Kim,et al. Quartz Crystal Microbalance Technique for in Situ Analysis of Supersaturation in Cooling Crystallization. , 2016, Analytical chemistry.
[365] Ian M. Hill,et al. Enantiomerically selective vapochromic sensing , 2010 .
[366] D. Walt. Fiber optic array biosensors. , 2006, BioTechniques.
[367] Bai-Ou Guan,et al. Ultrasensitive plasmonic sensing in air using optical fibre spectral combs , 2016, Nature Communications.
[368] Franz L. Dickert,et al. Surface Acoustic Wave (SAW) for Chemical Sensing Applications of Recognition Layers † , 2017, Sensors.
[369] R. Axel,et al. A novel multigene family may encode odorant receptors: A molecular basis for odor recognition , 1991, Cell.
[370] F. Green,et al. The Sigma-Aldrich Handbook of Stains, Dyes and Indicators , 1990 .
[371] Jong Seung Kim,et al. Chromogenic/Fluorogenic Ensemble Chemosensing Systems. , 2015, Chemical reviews.
[372] Chunhai Fan,et al. Target-responsive structural switching for nucleic acid-based sensors. , 2010, Accounts of chemical research.
[373] Derek K. Tseng,et al. Imaging and sizing of single DNA molecules on a mobile phone. , 2014, ACS nano.
[374] Ulrich Amsel,et al. Comprehensive Supramolecular Chemistry , 2016 .
[375] Francisco Zaera,et al. Probing liquid/solid interfaces at the molecular level. , 2012, Chemical reviews.
[376] Kenneth S. Suslick,et al. Colorimetric sensor arrays: Interplay of geometry, substrate and immobilization , 2014 .
[377] C. Henry. Product Review: Measuring the Masses: Quartz crystal microbalances , 1996 .
[378] A. Ellington,et al. Identifying Protein Variants with Cross‐Reactive Aptamer Arrays , 2011, Chembiochem : a European journal of chemical biology.
[379] M. Adams,et al. Differential sensing using proteins: exploiting the cross-reactivity of serum albumin to pattern individual terpenes and terpenes in perfume. , 2009, Journal of the American Chemical Society.
[380] Wei Zhang,et al. Portable point-of-care diagnostic devices , 2016 .
[381] N. Tufenkji,et al. Using the quartz crystal microbalance with dissipation monitoring to evaluate the size of nanoparticles deposited on surfaces. , 2013, ACS nano.
[382] K. Suslick,et al. A colorimetric sensor array for identification of toxic gases below permissible exposure limits. , 2010, Chemical communications.
[383] Jae Ho Shin,et al. Electrochemical sensors. , 2010, Analytical chemistry.
[384] T. Lazar. Color Chemistry: Synthesis, Properties, and Applications of Organic Dyes and Pigments 3rd revised edition , 2005 .
[385] Manuel Zarzo,et al. The sense of smell: molecular basis of odorant recognition , 2007, Biological reviews of the Cambridge Philosophical Society.
[386] N. Prabhakar,et al. Ratiometric Sensing and Imaging of Intracellular pH Using Polyethylenimine-Coated Photon Upconversion Nanoprobes. , 2017, Analytical chemistry.
[387] S. Goossens,et al. Broadband image sensor array based on graphene–CMOS integration , 2017, Nature Photonics.
[388] A. Maiti,et al. SnO2 nanoslab as NO2 sensor: identification of the NO2 sensing mechanism on a SnO2 surface. , 2014, ACS applied materials & interfaces.
[389] Andrea E. Holmes,et al. Colorimetric Sensor Arrays for the Detection and Identification of Chemical Weapons and Explosives , 2016, Critical reviews in analytical chemistry.
[390] F. Portaels,et al. Colorimetric redox-indicator methods for the rapid detection of multidrug resistance in Mycobacterium tuberculosis: a systematic review and meta-analysis. , 2007, The Journal of antimicrobial chemotherapy.
[391] Cheryl Surman,et al. Materials and transducers toward selective wireless gas sensing. , 2011, Chemical reviews.
[392] Thuc‐Quyen Nguyen,et al. High Mobility Organic Field-Effect Transistors from Majority Insulator Blends , 2016 .
[393] David R. Walt,et al. Ultra-sensitive protein detection via Single Molecule Arrays towards early stage cancer monitoring , 2015, Scientific Reports.
[394] A. Keller,et al. Humans Can Discriminate More than 1 Trillion Olfactory Stimuli , 2014, Science.
[395] C. Mirkin,et al. Nanoparticle Probes for the Detection of Cancer Biomarkers, Cells, and Tissues by Fluorescence. , 2015, Chemical reviews.
[396] Hugh Doyle,et al. Luminescent optical detection of volatile electron deficient compounds by conjugated polymer nanofibers. , 2015, Analytical chemistry.
[397] K. Suslick,et al. As Featured In: Showcasing Research From , 2022 .
[398] S. Jha,et al. Optical biosensors for food quality and safety assurance—a review , 2012, Journal of Food Science and Technology.
[399] Vincent M Rotello,et al. Gold nanoparticle-fluorophore complexes: sensitive and discerning "noses" for biosystems sensing. , 2010, Angewandte Chemie.
[400] T. Satoh,et al. Fluorescence Turn-On Sensing of Anions Based on Disassembly Process of Urea-Functionalized Poly(phenylenebutadiynylene) Aggregates , 2012 .
[401] J. Abe,et al. Remarkable solvatochromic color change via proton tautomerism of a phenol-linked imidazole derivative. , 2014, The journal of physical chemistry. A.
[402] Gi-Ra Yi,et al. A patterned colorimetric sensor array for rapid detection of TNT at ppt level , 2014 .
[403] Vincent M Rotello,et al. Rapid and efficient identification of bacteria using gold-nanoparticle-poly(para-phenyleneethynylene) constructs. , 2008, Angewandte Chemie.
[404] J. Llinares,et al. Cryptand-like anion receptors. , 2010, Chemical Society reviews.
[405] Steve Feng,et al. High-throughput and automated diagnosis of antimicrobial resistance using a cost-effective cellphone-based micro-plate reader , 2016, Scientific Reports.
[406] F. Vollmer,et al. Probing biomechanical properties with a centrifugal force quartz crystal microbalance , 2014, Nature Communications.
[407] Xianghong Liu,et al. Highly Efficient Gas Sensor Using a Hollow SnO2 Microfiber for Triethylamine Detection. , 2017, ACS sensors.
[408] U. Bunz,et al. A Polymer/Peptide Complex-Based Sensor Array That Discriminates Bacteria in Urine. , 2017, Angewandte Chemie.
[409] Kenneth S Suslick,et al. Differentiation among peroxide explosives with an optoelectronic nose. , 2015, Chemical communications.
[410] D. Walt,et al. Incorporation of Slow Off-Rate Modified Aptamers Reagents in Single Molecule Array Assays for Cytokine Detection with Ultrahigh Sensitivity. , 2016, Analytical chemistry.
[411] E. Scorsone,et al. A review of algorithms for SAW sensors e-nose based volatile compound identification , 2018 .
[412] O. Wolfbeis,et al. Fiber-Optic Chemical Sensors and Biosensors (2013-2015). , 2016, Analytical chemistry.
[413] Jiangli Fan,et al. Recent Development of Chemosensors Based on Cyanine Platforms. , 2016, Chemical reviews.
[414] S. Yao,et al. An electrochemical sensor for highly sensitive detection of copper ions based on a new molecular probe Pi-A decorated on graphene , 2017 .
[415] Charles E. Heckler,et al. Applied Multivariate Statistical Analysis , 2005, Technometrics.
[416] S. J. Martin,et al. Sensing liquid properties with thickness-shear mode resonators , 1994 .
[417] Avijit Sen,et al. Molecular recognition and discrimination of amines with a colorimetric array. , 2005, Angewandte Chemie.
[418] Joseph M. Azzarelli,et al. Rapid prototyping of carbon-based chemiresistive gas sensors on paper , 2013, Proceedings of the National Academy of Sciences.
[419] Kenneth S. Suslick,et al. Portable Optoelectronic Nose for Monitoring Meat Freshness , 2016 .
[420] D. T. LEWIS,et al. Spot Tests in Organic Analysis , 1961, Nature.
[421] Gi-Ra Yi,et al. Disposable microfluidic sensor arrays for discrimination of antioxidants. , 2016, Talanta.
[422] Fang Zeng,et al. Cyclodextrin supramolecular complex as a water-soluble ratiometric sensor for ferric ion sensing. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[423] Laura M. Lechuga,et al. Integrated optical devices for lab‐on‐a‐chip biosensing applications , 2012 .
[424] Hongyuan Chen,et al. Ratiometric fluorescence, electrochemiluminescence, and photoelectrochemical chemo/biosensing based on semiconductor quantum dots. , 2016, Nanoscale.
[425] A. Kobayashi,et al. Vapochromic Platinum(II) Complexes: Crystal Engineering toward Intelligent Sensing Devices , 2014 .
[426] P. K. Bharadwaj. Metal ion binding by laterally non-symmetric macrobicyclic oxa-aza cryptands. , 2017, Dalton transactions.
[427] Wenxuan Zhong,et al. Matrix Discriminant Analysis With Application to Colorimetric Sensor Array Data , 2015, Technometrics.
[428] Pai Peng,et al. Gas Classification Using Deep Convolutional Neural Networks , 2018, Sensors.
[429] V. Rotello,et al. Colorimetric protein sensing using catalytically amplified sensor arrays. , 2012, Small.
[430] Yaroslava G. Yingling,et al. Fluorescence Blinking as an Output Signal for Biosensing. , 2016, ACS sensors.
[431] Xin Xing,et al. Tensor sufficient dimension reduction , 2015, Wiley interdisciplinary reviews. Computational statistics.
[432] Alphus D. Wilson,et al. Applications and Advances in Electronic-Nose Technologies , 2009, Sensors.
[433] Kwang S. Kim,et al. Engineered Carbon-Nanomaterial-Based Electrochemical Sensors for Biomolecules. , 2016, ACS nano.
[434] Zhenan Bao,et al. Integrated materials design of organic semiconductors for field-effect transistors. , 2013, Journal of the American Chemical Society.
[435] Zhimin Huang,et al. Crucial role of copper in detection of metal-coordinating odorants , 2012, Proceedings of the National Academy of Sciences.
[436] Jasminder Singh,et al. Zinc metal complex as a sensor for simultaneous detection of fluoride and HSO4(-) ions. , 2015, Dalton transactions.
[437] of dye-labeled dendronized polymers of generation numbers 1 – 4 : comparison to dendrimers † , 2016 .
[438] H. Podbielska,et al. SOL-GELS FOR OPTICAL SENSORS , 2006 .
[439] Yanhua Dong,et al. Differentiation of proteins and cancer cells using metal oxide and metal nanoparticles-quantum dots sensor array , 2017 .
[440] Gregory A. Bakken,et al. Computational methods for the analysis of chemical sensor array data from volatile analytes. , 2000, Chemical reviews.
[441] A. Sannino,et al. Spin coating cellulose derivatives on quartz crystal microbalance plates to obtain hydrogel‐based fast sensors and actuators , 2007 .
[442] G. Cosa,et al. Bodipy dyes with tunable redox potentials and functional groups for further tethering: preparation, electrochemical, and spectroscopic characterization. , 2010, Journal of the American Chemical Society.
[443] R. Marchelli,et al. Fast parallel enantiomeric analysis of unmodified amino acids by sensing with fluorescent β-cyclodextrins , 2005 .
[444] P. Beer,et al. Advances in anion supramolecular chemistry: from recognition to chemical applications. , 2014, Angewandte Chemie.
[445] A. Hirsch,et al. The Neurology of Olfaction: Contents , 2009 .
[446] H. Haick,et al. Nanomaterial-based sensors for detection of disease by volatile organic compounds. , 2013, Nanomedicine.
[447] R. Paolesse,et al. Fluorescence based sensor arrays. , 2011, Topics in current chemistry.
[448] K. Suslick,et al. Identification of Nanoparticles with a Colorimetric Sensor Array , 2016 .
[449] Lingxin Chen,et al. A ratiometric fl uorescent probe for imaging and quantifying anti-apoptotic e ff ects of GSH under temperature stress † , 2017 .
[450] Jon R. Askim,et al. Hand-Held Reader for Colorimetric Sensor Arrays. , 2015, Analytical chemistry.
[451] E. Zellers,et al. Limits of recognition for simple vapor mixtures determined with a microsensor array. , 2004, Analytical chemistry.
[452] Maria K. LaGasse,et al. Solvatochromic sensor array for the identification of common organic solvents. , 2015, The Analyst.
[453] R. Hernandez,et al. Research highlights: examining the effect of shape on nanoparticle interactions with organisms , 2016 .
[454] Detection of miRNA using a double-strand displacement biosensor with a self-complementary fluorescent reporter. , 2014, Analytical chemistry.
[455] Qiyin Fang,et al. CMOS Image Sensors for High Speed Applications , 2009, Sensors.
[456] J. McGann,et al. Poor human olfaction is a 19th-century myth , 2017, Science.
[457] Kurt Hornik,et al. Multilayer feedforward networks are universal approximators , 1989, Neural Networks.
[458] Marco Carminati,et al. Advances in High-Resolution Microscale Impedance Sensors , 2017, J. Sensors.
[459] S. M. Robinson,et al. Rapid Identification of Bacterial Biofilms and Biofilm Wound Models Using a Multichannel Nanosensor , 2014, ACS nano.
[460] Benedetta Mennucci,et al. What is solvatochromism? , 2010, The journal of physical chemistry. B.
[461] Hirotsugu Ogi,et al. Isolated electrodeless high-frequency quartz crystal microbalance for immunosensors. , 2006, Analytical chemistry.
[462] P. Iyer,et al. Pendant chain engineering to fine-tune the nanomorphologies and solid state luminescence of naphthalimide AIEEgens: application to phenolic nitro-explosive detection in water. , 2017, Nanoscale.
[463] Yanhua Dong,et al. Colorimetric Sensor Array Based on Gold Nanoparticles with Diverse Surface Charges for Microorganisms Identification. , 2017, Analytical chemistry.
[464] M. Adams,et al. Serum albumins as differential receptors for the discrimination of fatty acids and oils. , 2010, Organic letters.
[465] Alaaldin M. Alkilany,et al. Gold nanoparticles in biology: beyond toxicity to cellular imaging. , 2008, Accounts of chemical research.
[466] S. K. Kim,et al. Bifunctional fluorescent calix[4]arene chemosensor for both a cation and an anion. , 2005, The Journal of organic chemistry.
[467] Aydogan Ozcan,et al. Computational Sensing Using Low-Cost and Mobile Plasmonic Readers Designed by Machine Learning. , 2017, ACS nano.
[468] Roberto Cingolani,et al. Charge transport and intrinsic fluorescence in amyloid-like fibrils , 2007, Proceedings of the National Academy of Sciences.
[469] Michael A. Brook,et al. Design of Gold Nanoparticle-Based Colorimetric Biosensing Assays , 2008 .