Chemical and biological sensing using liquid crystals
暂无分享,去创建一个
Reza Abbasi | Nicholas L Abbott | Rebecca J Carlton | Jacob T Hunter | Daniel S Miller | Peter C Mushenheim | Lie Na Tan | N. Abbott | R. J. Carlton | R. Abbasi | Daniel S. Miller | L. Tan | J. T. Hunter | P. Mushenheim | R. Carlton
[1] N. Abbott,et al. Microfluidic sensing devices employing in situ-formed liquid crystal thin film for detection of biochemical interactions. , 2012, Lab on a chip.
[2] A. Schenning,et al. Printable optical sensors based on H-bonded supramolecular cholesteric liquid crystal networks. , 2012, Journal of the American Chemical Society.
[3] Yan Wang,et al. Light‐Driven Chiral Molecular Switches or Motors in Liquid Crystals , 2012, Advanced materials.
[4] D. Broer,et al. Irreversible visual sensing of humidity using a cholesteric liquid crystal. , 2012, Chemical communications.
[5] N. Abbott,et al. Ordering transitions triggered by specific binding of vesicles to protein-decorated interfaces of thermotropic liquid crystals. , 2012, Langmuir : the ACS journal of surfaces and colloids.
[6] Patrick S. Noonan,et al. Surfactant–DNA interactions at the liquid crystal–aqueous interface , 2012 .
[7] Tanmay Bera,et al. Polyelectrolyte-coated liquid crystal droplets for detecting charged macromolecules , 2012 .
[8] Juan Carlos Torres,et al. Temperature-Frequency Converter Using a Liquid Crystal Cell as a Sensing Element , 2012, Sensors.
[9] N. Abbott,et al. Enantiomeric interactions between liquid crystals and organized monolayers of tyrosine-containing dipeptides. , 2012, Journal of the American Chemical Society.
[10] N. Abbott,et al. Influence of simple electrolytes on the orientational ordering of thermotropic liquid crystals at aqueous interfaces. , 2012, Langmuir : the ACS journal of surfaces and colloids.
[11] Chang-Hyun Jang,et al. Using liquid crystals to report molecular interactions between cationic antimicrobial peptides and lipid membranes. , 2012, The Analyst.
[12] S. Chatterjee,et al. Formation and ordering of topological defect arrays produced by dilatational strain and shear flow in smectic-A liquid crystals. , 2012, Physical review. E, Statistical, nonlinear, and soft matter physics.
[13] Soo-young Park,et al. Protein detection using aqueous/LC interfaces decorated with a novel polyacrylic acid block liquid crystalline polymer , 2012 .
[14] Q. Hu,et al. Using liquid crystals for the label-free detection of catalase at aqueous-LC interfaces. , 2012, Journal of biotechnology.
[15] J. Yu,et al. A novel liquid crystal-based sensor for the real-time identification of organophosphonate vapors , 2011 .
[16] Monitoring spatial distribution of ethanol in microfluidic channels by using a thin layer of cholesteric liquid crystal. , 2011, Lab on a chip.
[17] J. Goodby. The nanoscale engineering of nematic liquid crystals for displays , 2011 .
[18] Soo-young Park,et al. Microfluidic formation of pH responsive 5CB droplets decorated with PAA-b-LCP. , 2011, Lab on a chip.
[19] Vera Joanne Aliño,et al. Liquid crystal droplets as a hosting and sensing platform for developing immunoassays. , 2011, Langmuir : the ACS journal of surfaces and colloids.
[20] Kun-Lin Yang,et al. Detection of DNA targets hybridized to solid surfaces using optical images of liquid crystals. , 2011, ACS applied materials & interfaces.
[21] Jiyu Fang,et al. Director configuration transitions of polyelectrolyte coated liquid-crystal droplets. , 2011, The journal of physical chemistry. B.
[22] C. Murphy,et al. Endotoxin-Induced Structural Transformations in Liquid Crystalline Droplets , 2011, Science.
[23] Q. Hu,et al. Using liquid crystals for the real-time detection of urease at aqueous/liquid crystal interfaces , 2011, Journal of Materials Science.
[24] Kun-Lin Yang,et al. Detecting and differentiating Escherichia coli strain TOP10 using optical textures of liquid crystals , 2010 .
[25] N. Abbott,et al. Effects of Divalent Ligand Interactions on Surface-Induced Ordering of Liquid Crystals , 2010 .
[26] C. Ohm,et al. Liquid Crystalline Elastomers as Actuators and Sensors , 2010, Advanced materials.
[27] Kun-Lin Yang,et al. Using copper perchlorate doped liquid crystals for the detection of organophosphonate vapor , 2010 .
[28] N. Abbott,et al. Design of Biomolecular Interfaces Using Liquid Crystals Containing Oligomeric Ethylene Glycol , 2010, Advanced functional materials.
[29] Kun-Lin Yang,et al. Polymer stabilized cholesteric liquid crystal arrays for detecting vaporous amines. , 2010, The Analyst.
[30] N. Abbott,et al. Adsorbate-Induced Ordering Transitions of Nematic Liquid Crystals on Surfaces Decorated with Aluminum Perchlorate Salts , 2010 .
[31] M. E. Buck,et al. Immobilization of polymer-decorated liquid crystal droplets on chemically tailored surfaces. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[32] R. February,et al. Liquid Crystal-based Imaging of Enzymatic Reactions at Aqueous-liquid Crystal Interfaces Decorated with Oligopeptide Amphiphiles , 2010 .
[33] Jianhua Zou,et al. Director configuration of liquid-crystal droplets encapsulated by polyelectrolytes. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[34] N. Abbott,et al. Design of surfaces for liquid crystal-based bioanalytical assays. , 2010, ACS applied materials & interfaces.
[35] Kun-Lin Yang,et al. Detection and quantification of DNA adsorbed on solid surfaces by using liquid crystals. , 2010, Langmuir : the ACS journal of surfaces and colloids.
[36] Kun-Lin Yang,et al. Real‐Time Liquid Crystal pH Sensor for Monitoring Enzymatic Activities of Penicillinase , 2009 .
[37] Kun-Lin Yang,et al. Decorating Liquid Crystal Surfaces with Proteins for Real‐Time Detection of Specific Protein–Protein Binding , 2009 .
[38] Kun-Lin Yang,et al. Self-assembly of cholesterol DNA at liquid crystal/aqueous interface and its application for DNA detection , 2009 .
[39] Sri Sivakumar,et al. Liquid Crystal Emulsions as the Basis of Biological Sensors for the Optical Detection of Bacteria and Viruses , 2009 .
[40] N. Abbott,et al. Characterization of adsorbate-induced ordering transitions of liquid crystals within monodisperse droplets. , 2009, Langmuir : the ACS journal of surfaces and colloids.
[41] Kun-Lin Yang,et al. Principles of detecting vaporous thiols using liquid crystals and metal ion microarrays. , 2009, The Analyst.
[42] Kun-Lin Yang,et al. A liquid crystal-based sensor for real-time and label-free identification of phospholipase-like toxins and their inhibitors. , 2009, Biosensors & bioelectronics.
[43] N. Abbott,et al. Size-dependent ordering of liquid crystals observed in polymeric capsules with micrometer and smaller diameters. , 2009, Angewandte Chemie.
[44] W. Qin,et al. Imaging the disruption of phospholipid monolayer by protein-coated nanoparticles using ordering transitions of liquid crystals. , 2009, Biomaterials.
[45] N. Abbott,et al. Optically Responsive and Mechanically Tunable Colloid‐In‐Liquid Crystal Gels that Support Growth of Fibroblasts , 2008 .
[46] N. Abbott,et al. ORDERING TRANSITIONS IN LIQUID CRYSTALS PERMIT IMAGING OF SPATIAL AND TEMPORAL PATTERNS FORMED BY PROTEINS PENETRATING INTO LIPID-LADEN INTERFACES , 2008, Chemical engineering communications.
[47] Xinyan Bi,et al. Real-time liquid crystal-based glutaraldehyde sensor , 2008 .
[48] N. Abbott,et al. Self-assembly of amphiphiles, polymers and proteins at interfaces between thermotropic liquid crystals and aqueous phases , 2008 .
[49] D. K. Schwartz,et al. DNA hybridization-induced reorientation of liquid crystal anchoring at the nematic liquid crystal/aqueous interface. , 2008, Journal of the American Chemical Society.
[50] N. Clark,et al. Liquid crystal alignment on a chiral surface: interfacial interaction with sheared DNA films. , 2008, Langmuir : the ACS journal of surfaces and colloids.
[51] N. Abbott,et al. Quantitative methods based on twisted nematic liquid crystals for mapping surfaces patterned with bio/chemical functionality relevant to bioanalytical assays. , 2008, Analytical chemistry.
[52] Nicholas L. Abbott,et al. Ordering Transitions in Thermotropic Liquid Crystals Induced by the Interfacial Assembly and Enzymatic Processing of Oligopeptide Amphiphiles , 2008 .
[53] N. Abbott,et al. Monodisperse Emulsions through Templating Polyelectrolyte Multilayer Capsules , 2008 .
[54] N. Abbott,et al. Elastic energy-driven phase separation of phospholipid monolayers at the nematic liquid-crystal-aqueous interface. , 2008, Physical review letters.
[55] N. Abbott,et al. Detection of organophosphorous nerve agents using liquid crystals supported on chemically functionalized surfaces , 2007 .
[56] N. Abbott,et al. Characterization of the interactions between synthetic nematic LCs and model cell membranes , 2007 .
[57] N. Abbott,et al. Using measurements of anchoring energies of liquid crystals on surfaces to quantify proteins captured by immobilized ligands. , 2007, Journal of the American Chemical Society.
[58] N. Abbott,et al. Coupling of the orientations of thermotropic liquid crystals to protein binding events at lipid-decorated interfaces. , 2007, Langmuir : the ACS journal of surfaces and colloids.
[59] Olivier Lazcka,et al. Pathogen detection: a perspective of traditional methods and biosensors. , 2007, Biosensors & bioelectronics.
[60] M. Peters. ‘Weapons of Mass Casualties and Terrorism Response Handbook’, Charles Stewart MD FACEP - American Academy of Orthopaedic Surgeons Jones and Bartlett. 2005 , 2015 .
[61] N. Abbott,et al. Formation of Oligopeptide-Based Polymeric Membranes at Interfaces between Aqueous Phases and Thermotropic Liquid Crystals , 2006 .
[62] N. Abbott,et al. Infrared spectroscopy of competitive interactions between liquid crystals, metal salts, and dimethyl methylphosphonate at surfaces. , 2006, The journal of physical chemistry. B.
[63] Stephen M. Martin,et al. Anisotropic Particles from LC Polymers for Optical Manipulation , 2006 .
[64] N. Abbott,et al. Tailoring the interfaces between nematic liquid crystal emulsions and aqueous phases via layer-by-layer assembly. , 2006, Nano letters (Print).
[65] B. Clare,et al. Anchoring energies of liquid crystals measured on surfaces presenting oligopeptides. , 2006, Langmuir : the ACS journal of surfaces and colloids.
[66] Chang-Hyun Jang,et al. Anchoring of nematic liquid crystals on viruses with different envelope structures. , 2006, Nano letters.
[67] L. Zedler,et al. Functional liquid crystal films selectively recognize amine vapours and simultaneously change their colour. , 2006, Chemical communications.
[68] Sean P. Palecek,et al. Thermotropic Liquid Crystals as Substrates for Imaging the Reorganization of Matrigel by Human Embryonic Stem Cells , 2006 .
[69] E. Terentjev,et al. Spontaneous size selection in cholesteric and nematic emulsions. , 2006, Langmuir : the ACS journal of surfaces and colloids.
[70] Christopher J Murphy,et al. Compatibility of lyotropic liquid crystals with viruses and mammalian cells that support the replication of viruses. , 2005, Biomaterials.
[71] N. Abbott,et al. Using liquid crystals to report membrane proteins captured by affinity microcontact printing from cell lysates and membrane extracts. , 2005, Journal of the American Chemical Society.
[72] B. Clare,et al. Orientations of nematic liquid crystals on surfaces presenting controlled densities of peptides: amplification of protein-peptide binding events. , 2005, Langmuir : the ACS journal of surfaces and colloids.
[73] R. Bartolino,et al. Cholesteric Liquid Crystal Mixtures Sensitive to Different Ranges of Solar UV Irradiation , 2005 .
[74] Lanfang Li,et al. Liquid crystal effects on bacterial viability , 2005 .
[75] Kishan Dholakia,et al. Optically Anisotropic Colloids of Controllable Shape , 2005 .
[76] N. Abbott,et al. Formation and characterization of phospholipid monolayers spontaneously assembled at interfaces between aqueous phases and thermotropic liquid crystals. , 2005, Langmuir : the ACS journal of surfaces and colloids.
[77] G. Whitesides,et al. Generation of monodisperse particles by using microfluidics: control over size, shape, and composition. , 2005, Angewandte Chemie.
[78] N. Abbott,et al. Use of self-assembled monolayers, metal ions and smectic liquid crystals to detect organophosphonates , 2005 .
[79] N. Abbott,et al. Mechanistic Study of the Anchoring Behavior of Liquid Crystals Supported on Metal Salts and Their Orientational Responses to Dimethyl Methylphosphonate , 2004 .
[80] R. Zentel,et al. Liquid-Crystalline Colloidal Particles , 2004 .
[81] N. Abbott,et al. Deciphering the interactions between liquid crystals and chemically functionalized surfaces: Role of hydrogen bonding on orientations of liquid crystals , 2004 .
[82] S. P. Martin,et al. Highly birefringent colloidal particles for tracer studies , 2004 .
[83] N. Abbott,et al. Patterned Orientations of Liquid Crystals on Affinity Microcontact Printed Proteins , 2004 .
[84] Ronald T. Raines,et al. Imaging the binding ability of proteins immobilized on surfaces with different orientations by using liquid crystals. , 2004, Journal of the American Chemical Society.
[85] C. Murphy,et al. Non-toxic thermotropic liquid crystals for use with mammalian cells , 2004 .
[86] A. Shabanov,et al. Transformation of director configuration upon changing boundary conditions in droplets of nematic liquid crystal , 2004 .
[87] N. Abbott,et al. Orientational behavior of thermotropic liquid crystals on surfaces presenting electrostatically bound vesicular stomatitis virus. , 2004, Langmuir : the ACS journal of surfaces and colloids.
[88] N. Abbott,et al. Biomolecular Interactions at Phospholipid-Decorated Surfaces of Liquid Crystals , 2003, Science.
[89] Jose Maria Kenny,et al. Sensitivity to NO2 and cross-sensitivity analysis to NH3, ethanol and humidity of carbon nanotubes thin film prepared by PECVD , 2003 .
[90] Ramaier Narayanaswamy,et al. Cholesteric liquid crystals for detection of organic vapours , 2003 .
[91] N. Abbott,et al. Orientational Transitions of Liquid Crystals Driven by Binding of Organoamines to Carboxylic Acids Presented at Surfaces with Nanometer-Scale Topography , 2003 .
[92] H. Kawamoto,et al. The history of liquid-crystal displays , 2002, Proc. IEEE.
[93] N. Abbott,et al. An Experimental System for Imaging the Reversible Adsorption of Amphiphiles at Aqueous−Liquid Crystal Interfaces , 2002 .
[94] Rahul R. Shah,et al. Principles for Measurement of Chemical Exposure Based on Recognition-Driven Anchoring Transitions in Liquid Crystals , 2001, Science.
[95] N. Abbott,et al. Influence of Molecular-Level Interactions on the Orientations of Liquid Crystals Supported on Nanostructured Surfaces Presenting Specifically Bound Proteins , 2001 .
[96] N. Abbott,et al. Coupling of the Orientations of Liquid Crystals to Electrical Double Layers Formed by the Dissociation of Surface-Immobilized Salts , 2001 .
[97] N. Abbott,et al. Quantitative Interpretation of the Optical Textures of Liquid Crystals Caused by Specific Binding of Immunoglobulins to Surface-Bound Antigens , 2000 .
[98] Stephen M. Kelly,et al. Liquid crystals for twisted nematic display devices , 1999 .
[99] P. Poulin,et al. Rotational Diffusion of Monodisperse Liquid Crystal Droplets , 1998 .
[100] V K Gupta,et al. Optical amplification of ligand-receptor binding using liquid crystals. , 1998, Science.
[101] O. D. Lavrentovich,et al. Topological defects in dispersed words and worlds around liquid crystals, or liquid crystal drops , 1998 .
[102] Paul Drzaic,et al. Liquid Crystal Dispersions , 1995 .
[103] Martin Schadt,et al. LIQUID CRYSTAL MATERIALS AND LIQUID CRYSTAL DISPLAYS , 1997 .
[104] Franz L. Dickert,et al. Cholesteric liquid crystals for solvent vapour detection — Elimination of cross sensitivity by band shape analysis and pattern recognition , 1994 .
[105] J. Bibette. Depletion interactions and fractionated crystal-lization for polydisperse emulsion purification , 1991 .
[106] H. Stegemeyer,et al. Alignment of Liquid Crystals by Amphiphilic Monolayers , 1978 .
[107] E. J. Poziomek,et al. Use of Liquid Crystals as Vapor Detectors , 1974 .
[108] C. Tanford. Macromolecules , 1994, Nature.
[109] V. Fréedericksz,et al. Forces causing the orientation of an anisotropic liquid , 1933 .
[110] V. Fréedericksz,et al. Theoretisches und Experimentelles zur Frage nach der Natur der anisotropen Flüssigkeiten , 1927 .