Document Type
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BL
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Record Number
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855673
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Main Entry
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Kutner, Wlodzimierz.
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Title & Author
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Molecularly Imprinted Polymers for Analytical Chemistry Applications
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Publication Statement
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Cambridge :: Royal Society of Chemistry,, 2018.
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Series Statement
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RSC Polymer Chemistry Series
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Page. NO
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1 online resource (499 pages)
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ISBN
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1788010477
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: 1788014278
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: 9781788010474
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: 9781788014274
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1782626476
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9781782626473
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Bibliographies/Indexes
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Includes bibliographical references and index.
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Contents
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Front Cover; Molecularly Imprinted Polymers for Analytical Chemistry Applications; Preface; Contents; Chapter 1 -- Nano-sized Molecularly Imprinted Polymers as Artificial Antibodies; 1.1 Molecularly Imprinted Polymers: Different Formats for Different Applications; 1.2 Advances in the Synthesis of NanoMIPs; Different Approaches to Preparation of MIPs as Nanoparticles; 1.2.1 Precipitation Polymerisation; 1.2.2 Mini- and Micro-emulsion Polymerisation; 1.2.3 Atom Transfer Radical Polymerisation (ATRP) and Reversible Addition-fragmentation Chain Transfer Polymerisation (RAFT)
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1.2.4 Solid-phase Polymerisation1.3 NanoMIPs as Plastic Antibodies for Bioanalytical Applications; 1.3.1 NanoMIPs as Sensor Components; 1.3.1.1 Electrical and Electrochemical Sensors; 1.3.1.2 Optical Sensors; 1.3.1.3 Other MIP Chemosensors; 1.3.2 NanoMIPs in Assays; 1.3.3 NanoMIPs in Cells and in vivo; 1.4 Conclusion and Perspectives; List of Abbreviations; References; Chapter 2 -- Synthetic Chemistry for Molecular Imprinting; 2.1 Introduction; 2.2 Strategic Syntheses of MIPs; 2.2.1 Interactions Between Templates and Functional Monomers; 2.2.1.1 Covalent and Semi-covalent Imprinting
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2.2.1.2 Weak Non-covalent Interactions2.2.1.2.1 Lewis Acid-Base Interactions.; 2.2.1.2.2 van der Waals Interactions.; 2.2.1.2.3 Hydrophobic Interactions.; 2.2.1.3 Electrostatic Interactions; 2.2.1.4 Metal-Ligand Coordination; 2.2.2 MIP Synthesis; 2.2.2.1 Imprinting Strategies; 2.2.2.1.1 Linear Chain Polymer Cross-linking.; 2.2.2.1.2 Ligand Chemical Immobilization.; 2.2.2.1.3. Ligand Physical Entrapment.; 2.2.1.1.4. Surface Imprinting.; 2.2.2.2 Polymerization; 2.2.2.2.1 Polymerization Reactions.; 2.2.2.2.2 Polymerization Techniques.; 2.2.2.3 Template Removal; 2.3 Analytical Applications of MIPs
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2.3.1 Fabrication of MIP-based Chemosensors2.3.1.1 MIPs with Internal Transducers; 2.3.1.2 MIPs with External Transducers; 2.3.2 MIP-based Chemosensors for Analytical Study; 2.3.2.1 Health Monitoring; 2.3.2.2 Environment and Food Control; 2.4 Conclusion; List of Abbreviations; Acknowledgements; References; Chapter 3 -- Molecularly Imprinted Polymers-based Separation and Sensing of Nucleobases, Nucleosides, Nucleotides and Oligonucleotides; 3.1 Introduction; 3.2 Various Approaches to Synthesize MIPs for Nucleic Acids; 3.2.1 Nucleoside Structures and Conformation
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3.2.2 Molecularly Imprinted Polymers for Recognition of Purines3.2.3 Molecularly Imprinted Polymer for Recognition of Pyrimidines; 3.3 MIPs for Extraction and Separation of Nucleic Acid Analogues; 3.3.1 Molecularly Imprinted Solid-phase Extraction (MISPE); 3.3.2 Molecularly Imprinted Solid-phase Microextraction (MISPME); 3.3.3 Molecularly Imprinted Matrix Solid-phase Dispersion; 3.3.4 Molecularly Imprinted Polymers as Stationary Phases; 3.3.5 Molecularly Imprinted Polymer as Membranes; 3.4 MIPs as Nucleos(t)ide and Analogue Recognition Units in Chemosensors
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3.4.1 Electrochemical Sensors with MIPs
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Abstract
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A summary of the latest developments and applications of molecular imprinting for selective chemical sensing.
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Subject
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Chemistry, Analytic.
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Subject
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Molecular imprinting.
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Subject
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Analytical chemistry.
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Subject
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Chemistry, Analytic.
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Subject
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Materials science.
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Subject
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Molecular imprinting.
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Subject
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TECHNOLOGY ENGINEERING-- Chemical Biochemical.
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Dewey Classification
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668.9/2
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LC Classification
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QD382.I43
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Added Entry
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Sharma, Piyush Sindhu.
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