Raman spectroscopy in the analysis of food and pharmaceutical nanomaterials
暂无分享,去创建一个
[1] M. Morris,et al. Resonance Raman Spectroscopic Study of Bilirubin Hydrogen Bonding in Solutions and in the Albumin Complex , 1988 .
[2] V. Chiș,et al. Detection of thiabendazole applied on citrus fruits and bananas using surface enhanced Raman scattering. , 2014, Food chemistry.
[3] T. Vo-Dinh,et al. Surface-Enhanced Raman Scattering Fiber-Optic Sensor , 1990 .
[4] E. V. Thomas,et al. COMPARISON OF MULTIVARIATE CALIBRATION METHODS FOR QUANTITATIVE SPECTRAL ANALYSIS , 1990 .
[5] Yibin Ying,et al. Applications of Raman Spectroscopy in Agricultural Products and Food Analysis: A Review , 2011 .
[6] Elazer R. Edelman,et al. Adv. Drug Delivery Rev. , 1997 .
[7] J. Laserna,et al. Modern techniques in Raman spectroscopy , 1996 .
[8] J. Greve,et al. Raman microspectroscopy of single whole cells , 1993 .
[9] P. Tonge,et al. Raman, resonance Raman and FTIR spectroscopic studies of enzyme-substrate complexes , 1993 .
[10] Giulietta Smulevich,et al. Surface-enhanced resonance Raman spectra of adriamycin, 11-deoxycarminomycin, their model chromophores, and their complexes with DNA , 1986 .
[11] Tuan Vo-Dinh,et al. Fiber optic sensor probe for in-situ surface-enhanced Raman monitoring , 1991, Other Conferences.
[12] Mengshi Lin. A review of traditional and novel detection techniques for melamine and its analogues in foods and animal feed , 2009 .
[13] G. Placzek,et al. Rayleigh-Streuung und Raman-Effekt , 1934 .
[14] P. Hendra,et al. Use of optical fibres in Raman spectroscopy , 1988 .
[15] S. Pinzaru,et al. SERS and Pharmaceuticals , 2010 .
[16] M. Albrecht,et al. Anomalously intense Raman spectra of pyridine at a silver electrode , 1977 .
[17] H. Nürnberg,et al. Surface-Enhanced Raman Scattering (SERS) Spectroscopy of Nucleic Acids , 1981 .
[18] A. Boxall,et al. Detection and characterization of engineered nanoparticles in food and the environment , 2008, Food additives & contaminants. Part A, Chemistry, analysis, control, exposure & risk assessment.
[19] A. Deisingh,et al. Biosensors for the detection of bacteria. , 2004, Canadian journal of microbiology.
[20] M. Morris,et al. Surface-enhanced Raman spectroscopy of the catecholamine neurotransmitters and related compounds. , 1988, Analytical chemistry.
[21] S. Doglia,et al. Quantitative study of doxorubicin in living cell nuclei by microspectrofluorometry. , 1988, Biochimica et biophysica acta.
[22] R. Meier. On art and science in curve-fitting vibrational spectra , 2005 .
[23] M. Morris,et al. Surface-enhanced Raman spectroscopy of free and complexed bilirubin , 1987 .
[24] Duncan Graham,et al. Quantitative Surface-Enhanced Resonance Raman Spectroscopy for Analysis , 2006 .
[25] Tatsuhiro Yamamoto,et al. An analytical system for single nanomaterials: combination of capillary electrophoresis with Raman spectroscopy or with scanning probe microscopy for individual single-walled carbon nanotube analysis. , 2009, Analytical chemistry.
[26] W. Smith,et al. Quantitative analysis of mitoxantrone by surface-enhanced resonance Raman scattering. , 2002, Analytical chemistry.
[27] Duncan Graham,et al. Surface-enhanced Raman scattering , 1998 .
[28] Thomas G. Spiro,et al. Biological applications of Raman spectroscopy , 1987 .
[29] D. L. Jeanmaire,et al. Surface raman spectroelectrochemistry: Part I. Heterocyclic, aromatic, and aliphatic amines adsorbed on the anodized silver electrode , 1977 .
[30] Gilbert C Walker,et al. Detection of chronic lymphocytic leukemia cell surface markers using surface enhanced Raman scattering gold nanoparticles. , 2010, Cancer letters.
[31] I. R. Lewis,et al. Handbook of Raman Spectroscopy: From the Research Laboratory to the Process Line , 2001 .
[32] J. Rabolt,et al. Fourier transform Raman spectroscopy : from concept to experiment , 1994 .
[33] A. Kandel. Fuzzy Mathematical Techniques With Applications , 1986 .
[34] John A. Hartigan,et al. Clustering Algorithms , 1975 .
[35] Y. Duan,et al. Chemistry, physics and biology of graphene-based nanomaterials: new horizons for sensing, imaging and medicine , 2012 .
[36] Shaojun Lin,et al. Raman spectral study of anti-angiogenic drugs on the role of chick vascular , 2009, Photonics and Optoelectronics Meetings.
[37] B. Liu,et al. Detection of Pesticides in Fruits by Surface-Enhanced Raman Spectroscopy Coupled with Gold Nanostructures , 2013, Food and Bioprocess Technology.
[38] Royston Goodacre,et al. Portable, Quantitative Detection of Bacillus Bacterial Spores Using Surface-enhanced Raman Scattering , 2022 .
[39] B M Cullum,et al. The development of optical nanosensors for biological measurements. , 2000, Trends in biotechnology.
[40] Naomi J Halas,et al. Engineered nanomaterials for biophotonics applications: improving sensing, imaging, and therapeutics. , 2003, Annual review of biomedical engineering.
[41] Y. Kraan,et al. Single-cell Raman and fluorescence microscopy reveal the association of lipid bodies with phagosomes in leukocytes. , 2005, Proceedings of the National Academy of Sciences of the United States of America.
[42] Tuan Vo-Dinh,et al. SERS-based plasmonic nanobiosensing in single living cells , 2009, Analytical and bioanalytical chemistry.
[43] Hongjie Dai,et al. Multiplexed multicolor Raman imaging of live cells with isotopically modified single walled carbon nanotubes. , 2008, Journal of the American Chemical Society.
[44] T. Furtak,et al. Angular resolved Raman scattering using fiber optic probes , 1980 .
[45] R. Stosch,et al. Double isotope dilution surface-enhanced Raman scattering as a reference procedure for the quantification of biomarkers in human serum. , 2011, The Analyst.
[46] K. Nakamoto,et al. Comparative study of aclacinomycin versus adriamycin by means of resonance Raman spectroscopy , 1990 .
[47] Ehud Gazit,et al. Plenty of Room for Biology at the Bottom: An Introduction to Bionanotechnology , 2007 .
[48] Rong Chen,et al. Rapid delivery of silver nanoparticles into living cells by electroporation for surface-enhanced Raman spectroscopy. , 2009, Biosensors & bioelectronics.
[49] A. Moore,et al. Noninvasive MRI-SERS imaging in living mice using an innately bimodal nanomaterial. , 2011, ACS nano.
[50] P. Skett,et al. Application of Fourier transform Raman spectroscopy to a range of compounds of pharmaceutical interest , 1993 .
[51] Bruce R. Kowalski,et al. Chemometrics: Theory and Application , 1977 .
[52] Y. Picó,et al. Determining nanomaterials in food , 2011 .
[53] N. Shah,et al. Surface-enhanced Raman spectroscopy. , 2008, Annual review of analytical chemistry.
[54] K. S. Krishnan,et al. A New Type of Secondary Radiation , 1928, Nature.
[55] R Zenobi,et al. Near-Field Surface-Enhanced Raman Imaging of Dye-Labeled DNA with 100-nm Resolution. , 1998, Analytical chemistry.
[56] P. Dirac. The Quantum Theory of the Emission and Absorption of Radiation , 1927 .
[57] Bryce J Marquis,et al. Analytical methods to assess nanoparticle toxicity. , 2009, The Analyst.
[58] M. Diem,et al. Raman Micro-spectral Imaging of Cells and Intracellular Drug Delivery Using Nanocarrier Systems , 2010 .
[59] M. A. Malik,et al. Towards quantitatively reproducible substrates for SERS. , 2008, The Analyst.
[60] M. Manfait,et al. Correlation between growth inhibition and intranuclear doxorubicin and 4'-deoxy-4'-iododoxorubicin quantitated in living K562 cells by microspectrofluorometry. , 1989, Cancer research.
[61] P. Hendra,et al. Routine analytical Fourier transform Raman spectroscopy , 1989 .
[62] R. Stosch,et al. Validation of isotope dilution surface‐enhanced Raman scattering (IDSERS) as a higher order reference method for clinical measurands employing international comparison schemes , 2013 .
[63] Пётр Петрович Лазарев. Handbuch der Radiologie , 1915 .
[64] Yi Lu,et al. Molecular diagnostic and drug delivery agents based on aptamer-nanomaterial conjugates. , 2010, Advanced drug delivery reviews.
[65] W. Smith,et al. Assessment of silver and gold substrates for the detection of amphetamine sulfate by surface enhanced Raman scattering (SERS). , 2002, The Analyst.
[66] Michael L. Myrick,et al. Elimination of Background in Fiber-Optic Raman Measurements , 1990 .
[67] M. Fleischmann,et al. Raman spectra of pyridine adsorbed at a silver electrode , 1974 .
[68] R. McCreery,et al. Versatile, efficient Raman sampling with fiber optics , 1984 .
[69] Zhuyuan Wang,et al. Surface enhanced Raman scattering traceable and glutathione responsive nanocarrier for the intracellular drug delivery. , 2013, Analytical chemistry.
[70] J. Kneipp. Nanosensors Based on SERS for Applications in Living Cells , 2006 .
[71] Peter Lasch,et al. Biomedical Vibrational Spectroscopy , 2008 .
[72] J. Peralta-Videa,et al. Nanomaterials in agricultural production: Benefits and possible threats? , 2013 .
[73] C. Raman. A new radiation , 1953 .
[74] The Quantum Theory of Dispersion , 1927 .
[75] K. Kneipp,et al. Two-photon vibrational spectroscopy for biosciences based on surface-enhanced hyper-Raman scattering , 2006, Proceedings of the National Academy of Sciences.
[76] S. Schneider,et al. Application of SERS spectroscopy to the identification of (3,4-methylenedioxy)amphetamine in forensic samples utilizing matrix stabilized silver halides. , 2001, The Analyst.
[77] Benjamin Saute,et al. Gold nanorods as surface enhanced Raman spectroscopy substrates for sensitive and selective detection of ultra-low levels of dithiocarbamate pesticides. , 2012, The Analyst.
[78] Igor Nabiev,et al. Contributions of Short-Range and Classical Electromagnetic Mechanisms to Surface-Enhanced Raman Scattering from Several Types of Biomolecules Adsorbed on Cold-Deposited Island Films , 1993 .
[79] Jan Toporski,et al. Confocal Raman Microscopy , 2003, Microscopy and Microanalysis.
[80] Accurate Concentration Measurements Using Surface-Enhanced Raman and Deuterium Exchanged Dye Pairs , 2008, Applied spectroscopy.
[81] E. Wang,et al. Spontaneous fractal aggregation of gold nanoparticles and controlled generation of aggregate-based fractal networks at air/water interface. , 2005, The journal of physical chemistry. B.
[82] H. Bouwmeester,et al. A review of analytical methods for the identification and characterization of nano delivery systems in food. , 2008, Journal of agricultural and food chemistry.
[83] J. W. Allwood,et al. Optimization of parameters for the quantitative surface-enhanced Raman scattering detection of mephedrone using a fractional factorial design and a portable Raman spectrometer. , 2013, Analytical chemistry.
[84] A. Savitzky,et al. Smoothing and Differentiation of Data by Simplified Least Squares Procedures. , 1964 .
[85] U. Gupta,et al. Dendrimers and Its Biomedical Applications , 2014 .
[86] C. K. Asawa,et al. Stimulated Optical Emission in Fluorescent Solids. II. Spectroscopy and Stimulated Emission in Ruby , 1961 .
[87] W. D. de Jong,et al. Drug delivery and nanoparticles: Applications and hazards , 2008, International journal of nanomedicine.
[88] Hao Li,et al. Use of a fractal-like gold nanostructure in surface-enhanced raman spectroscopy for detection of selected food contaminants. , 2008, Journal of agricultural and food chemistry.
[89] Detlef Schiel,et al. Surface-enhanced Raman scattering based approach for quantitative determination of creatinine in human serum. , 2005, Analytical chemistry.
[90] T. Spiro,et al. Ultraviolet resonance raman studies of proteins and related model compounds , 1993 .
[91] G. Dodin,et al. Low-frequency near-infrared Fourier transform Raman studies of ellipticines and deoxyribose nucleic acid , 1991 .
[92] Rong Chen,et al. Surface-enhanced Raman spectroscopy of morphine in silver colloid , 2009 .
[93] L. Ziegler,et al. Resonance Raman scattering of ethylene: Evidence for a twisted geometry in the V state , 1983 .
[94] M. Davies,et al. FT RAMAN SPECTROSCOPY OF DRUGS IN POLYMERS , 1990 .
[95] Pavel Matousek,et al. Noninvasive Authentication of Pharmaceutical Products through Packaging Using Spatially Offset Raman Spectroscopy , 2022 .
[96] Tuan Vo-Dinh,et al. NEAR-FIELD SURFACE-ENHANCED RAMAN SPECTROSCOPY OF DYE MOLECULES ADSORBED ON SILVER ISLAND FILMS , 1998 .
[97] Yiping Zhao,et al. Novel nanostructures for SERS biosensing , 2008 .
[98] A. Mustapha,et al. Antifungal activity of zinc oxide nanoparticles against Botrytis cinerea and Penicillium expansum. , 2011, Microbiological research.
[99] D. Meisel,et al. Adsorption and surface-enhanced Raman of dyes on silver and gold sols , 1982 .
[100] Stefan Keller,et al. Quality control of food with near-infrared-excited Raman spectroscopy , 1993 .
[101] Wolfgang Kiefer,et al. Identification and characterization of pharmaceuticals using Raman and surface‐enhanced Raman scattering , 2004 .
[102] Adolf Smekal,et al. Zur Quantentheorie der Dispersion , 1923, Naturwissenschaften.
[103] Rong Chen,et al. Quick detection of traditional Chinese medicine ‘Atractylodis Macrocephalae Rhizoma’ pieces by surface-enhanced Raman spectroscopy , 2012 .
[104] Qian Hu,et al. Uptake, translocation, and transmission of carbon nanomaterials in rice plants. , 2009, Small.
[105] A. Campion,et al. Surface-enhanced Raman scattering , 1998 .
[106] R. Lieberman,et al. Chemical Biochemical and Environmental Fiber Sensors , 1990 .
[107] Paul R. Carey,et al. Biochemical Applications of Raman and Resonance Raman Spectroscopies , 1982 .
[108] K. Linge,et al. Bioavailability of nanoscale metal oxides TiO(2), CeO(2), and ZnO to fish. , 2010, Environmental science & technology.
[109] K. Kneipp,et al. SERS--a single-molecule and nanoscale tool for bioanalytics. , 2008, Chemical Society reviews.
[110] D. Ben‐Amotz,et al. Isotope edited internal standard method for quantitative surface-enhanced Raman spectroscopy. , 2005, Analytical chemistry.
[111] M Laird Forrest,et al. Effects of nanomaterial physicochemical properties on in vivo toxicity. , 2009, Advanced drug delivery reviews.
[112] K. Carron,et al. Surface-Enhanced Raman Scattering Detection of Amphetamine and Methamphetamine by Modification with 2-Mercaptonicotinic Acid , 1999 .
[113] J. Gani,et al. Perspectives in Probability and Statistics. , 1980 .
[114] Hugh Barr,et al. The potential for histological screening using a combination of rapid Raman mapping and principal component analysis , 2009, Journal of biophotonics.
[115] S. Gambhir,et al. Noninvasive Raman spectroscopy in living mice for evaluation of tumor targeting with carbon nanotubes. , 2008, Nano letters.
[116] Mengshi Lin. The Application of Surface-Enhanced Raman Spectroscopy to Identify and Quantify Chemical Adulterants or Contaminants in Foods , 2010 .
[117] Nam-Jung Kim,et al. Surface‐enhanced Raman spectroscopy coupled with dendritic silver nanosubstrate for detection of restricted antibiotics , 2009 .
[118] M. J. Adams,et al. Chemometrics in Analytical Spectroscopy , 1995 .
[119] T. V. Duncan,et al. Applications of nanotechnology in food packaging and food safety: Barrier materials, antimicrobials and sensors , 2011, Journal of Colloid and Interface Science.
[120] R. Narayanan,et al. Solution-based direct readout surface enhanced Raman spectroscopic (SERS) detection of ultra-low levels of thiram with dogbone shaped gold nanoparticles. , 2011, The Analyst.
[121] Jianji Pan,et al. SERS spectra of a single nasopharyngeal carcinoma cell based on intracellularly grown and passive uptake Au nanoparticles , 2011 .
[122] J. Lloyd,et al. Surface-enhanced Raman scattering from intracellular and extracellular bacterial locations. , 2008, Analytical chemistry.
[123] R. Dasari,et al. Nanoparticles in measurement science. , 2012, Analytical chemistry.
[124] D. Carroll,et al. Silver Nanoplates : Size Control in Two Dimensions and Formation Mechanisms , 2004 .
[125] S. Porto,et al. Ruby Optical Maser as a Raman Source , 1962 .
[126] Royston Goodacre,et al. Characterisation and identification of bacteria using SERS. , 2008, Chemical Society reviews.
[127] Royston Goodacre,et al. Fourier transform infrared and Raman spectroscopies for the rapid detection, enumeration, and growth interaction of the bacteria Staphylococcus aureus and Lactococcus lactis ssp. cremoris in milk. , 2011, Analytical chemistry.
[128] V. Clark,et al. Computer-aided multivariate analysis , 1991 .
[129] C. Mirkin,et al. Nanoparticles with Raman spectroscopic fingerprints for DNA and RNA detection. , 2002, Science.
[130] T Theophanides,et al. Fourier transform infrared spectra of cells treated with the drug adriamycin. , 1983, Biochemical and biophysical research communications.
[131] A. Rich,et al. Interactions between an anthracycline antibiotic and DNA: molecular structure of daunomycin complexed to d(CpGpTpApCpG) at 1.2-A resolution. , 1987, Biochemistry.
[132] S. Wold,et al. SIMCA: A Method for Analyzing Chemical Data in Terms of Similarity and Analogy , 1977 .
[133] J. Ma,et al. Fiber Raman background study and its application in setting up optical fiber Raman probes. , 1996, Applied optics.
[134] H. F. Shurvell,et al. Fourier transform Raman and infrared vibrational study of diazepam and four closely related 1,4‐benzodiazepines , 1990 .
[135] R. Narayanan,et al. Solution‐based SERS method to detect dithiocarbamate fungicides in different real‐world matrices , 2013 .
[136] Ying-sing Li,et al. Optical-Fiber Raman Probe with Low Background Interference by Spatial Optimization , 1994 .
[137] Yichun Liu,et al. Magnetic-field-assisted rapid ultrasensitive immunoassays using Fe3O4/ZnO/Au nanorices as Raman probes. , 2010, Biosensors & bioelectronics.
[138] R. Lord. Vibrational spectra and structure : Volume 7, J.R. Durig, ed., Elsevier Scientific Publishing Co., Amsterdam, 1978, xv + 388 pages. Dfl. 146,00, $63.50. , 1976 .
[139] H. W. Thompson,et al. Advances in Spectroscopy , 1959 .
[140] Virender K. Sharma,et al. Sustainable Nanotechnology and the Environment: Advances and Achievements , 2013 .
[141] J. Irudayaraj,et al. Surface-enhanced Raman spectroscopy applied to food safety. , 2013, Annual review of food science and technology.
[142] Robert A. Freitas,et al. Nanomedicine, Volume I: Basic Capabilities , 1999 .
[143] H. Kramers. The Quantum Theory of Dispersion , 1924, Nature.
[144] Michael S. Feld,et al. Surface-Enhanced Raman Spectroscopy in Single Living Cells Using Gold Nanoparticles , 2002 .
[145] Zhiqiang Hu,et al. Rapid detection of food- and waterborne bacteria using surface-enhanced Raman spectroscopy coupled with silver nanosubstrates , 2011, Applied Microbiology and Biotechnology.
[146] P. J. Hendra,et al. Fiber optic probe for remote Raman spectrometry , 1983 .
[147] W. Tolles,et al. A Review of the Theory and Application of Coherent Anti-Stokes Raman Spectroscopy (CARS) , 1977 .
[148] F. Galluzzi,et al. Resonance Raman scattering and vibronic coupling in aquo‐ and cyano‐cobalamin , 1974 .