رکورد قبلیرکورد بعدی

" Handbook of Molecular Imprinting : "


Document Type : BL
Record Number : 777250
Doc. No : b597252
Main Entry : edited by Seung-Woo Lee, Toyoki Kunitake
Title & Author : Handbook of Molecular Imprinting : : advanced sensor applications\ edited by Seung-Woo Lee, Toyoki Kunitake
Publication Statement : Singapore : Pan Stanford Publishing, 2013
Page. NO : xvi, 608 p., 8 p. : illustrations (some color) ; 24 cm
ISBN : 9789814316651
: : 9789814364324
: : 9814316652
: : 9814364320
Notes : Fundamentals and Perspectives of Molecular Imprinting in Sensor Applications, -W. Lee et al. Molecularly Imprinted Sensing Receptors, R. Narayanaswamy et al Translational Applications of Molecularly Imprinted Polymer-Based Electrochemical Sensors, H.-Y. Lin et al. Optical Sensors for Monitoring Inorganic Toxins, T. Prasada Rao et al. 5 MIP Thermistor, F.W. Scheller et al The Use of a Thermally Reversible Bond for Molecular Imprinting, J.Y. Chang Molecular-Sieving Silica/Tin Oxide Sensor Prepared by Chemical Vapor Depositio in the Presence of Template Molecule, N. Katada et al. Environmental Approache by Molecular Imprinting on Titanium Dioxide, Y. Paz et al. Molecularly Imprinted Nanocomposites for Highly Sensitive SPR Detection, J. Matsui Molecularly Imprinted Room Temperature Phosphorescent Optosensors for Environmental Pollutants, X.-P. Yan Electrochemical Sensing of Nitro-Aromatic Compounds in Natural Waters and Soil Samples, T. Alizadeh Trace Detection Base on Cyclodextrin-anchored Molecularly Imprinted TiO2 Thin Films, S.-W. Lee Molecularly Imprinted Au Nanoparticles Composites and Their Application for Sensing, Controlled Release, and Photoelectrochemistry, I. Willner et al. ...
Contents : Fundamentals and Perspectives of Molecular Imprinting in Sensor Applications, S.-W. Lee et al.Molecularly Imprinted Sensing Receptors, R. Narayanaswamy et al.Translational Applications of Molecularly Imprinted Polymer-Based Electrochemical Sensors, H.-Y. Lin et al.Optical Sensors for Monitoring Inorganic Toxins, T. Prasada Rao et al.5 MIP Thermistor, F. W. Scheller et al.The Use of a Thermally Reversible Bond for Molecular Imprinting, J. Y. ChangMolecular-Sieving Silica/Tin Oxide Sensor Prepared by Chemical Vapor Deposition in the Presence of Template Molecule, N. Katada et al.Environmental Approaches by Molecular Imprinting on Titanium Dioxide, Y. Paz et al.Molecularly Imprinted Nanocomposites for Highly Sensitive SPR Detection, J. MatsuiMolecularly Imprinted Room Temperature Phosphorescent Optosensors for Environmental Pollutants, X.-P. YanElectrochemical Sensing of Nitro-Aromatic Compounds in Natural Waters and Soil Samples, T. AlizadehTrace Detection Based on Cyclodextrin-anchored Molecularly Imprinted TiO2 Thin Films, S.-W. LeeMolecularly Imprinted Au Nanoparticles Composites and Their Application for Sensing, Controlled Release, and Photoelectrochemistry, I. Willner et al.Protein-Sensing Using Organic/Inorganic Hybrid Materials Prepared by Liquid Phase Deposition-Based Molecular Imprinting, T. TakeuchiMolecular Imprinted Polymer-Based Chemiluminescence Sensors, Z. ZhangDetection of Cells and Viruses Using Synthetic Antibodies, F. L. Dickert et al.Molecularly Imprinted Polymers: Science Goes Market? - A Market Analysis Based on the Patent Situation, S. Schumacher
Abstract : Molecular imprinting focuses on the fabrication of an artificial receptor with perfect molecular recognition abilities. It has attracted a great deal of scientific attention because of the enormous opportunities it opens in the fields of separation, catalysis, and analysis. The advantages of the molecular imprinting enable to target a wide class of substances ranging from small molecules to big conglomerates, such as proteins or even cells. In recent years, sensor applications based on molecular imprinting have started to ...
Subject : Biosensors -- Materials.
Subject : Molecular imprinting
Subject : Molecular imprinting.
LC Classification : ‭QD382.I43‬‭E358 2013‬
Added Entry : Seung-Woo Lee
: Toyoki Kunitake
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