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Synthetic Receptors for Biomolecules : Design Principles and Applications.

Author: Bradley D SmithEric AnslynGeorge GokelS KubikBinghe WangAll authors
Publisher: Cambridge : Royal Society of Chemistry, 2015.
Series: Monographs in supramolecular chemistry.
Edition/Format:   eBook : Document : EnglishView all editions and formats
Database:WorldCat
Summary:
An accessible overview of the most effective synthetic receptors within the context of specific applications.
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Genre/Form: Electronic books
Additional Physical Format: Print version:
Synthetic receptors for biomolecules : design principles and applications.
Cambridge, England : Royal Society of Chemistry, ©2015
xv, 450 pages
Material Type: Document, Internet resource
Document Type: Internet Resource, Computer File
All Authors / Contributors: Bradley D Smith; Eric Anslyn; George Gokel; S Kubik; Binghe Wang; Jong-In Hong; A E Hargrove; C Schmuck; David Rotello; Royal Society of Chemistry (Great Britain),
ISBN: 1849739714 9781849739719 9781782622062 1782622063
OCLC Number: 990669440
Language Note: English.
Notes: Chapter 4 Synthetic Receptors for Small Organic and Inorganic Anions.
Description: 1 online resource (467 pages).
Contents: Cover; Contents; Preface; Chapter 1 Applications of Synthetic Receptors for Biomolecules; 1.1 Biomolecule Recognition; 1.2 Types of Synthetic Receptors; 1.2.1 Small Organic Molecules; 1.2.2 Inorganic Molecules; 1.2.3 Synthetic Oligomers; 1.2.4 Molecular Imprinted Polymers; 1.2.5 Dendrimers; 1.2.6 Nanoparticles; 1.3 Common Applications; 1.3.1 Separations; 1.3.2 Imaging and Sensing; 1.3.3 Catalysis; 1.3.4 Pharmaceutical Activity; 1.4 Future Directions; 1.4.1 Logic Devices; 1.4.2 Biomolecule Responsive Materials; 1.4.3 Drug Delivery; 1.4.4 Biomolecule-fueled Molecular Machines; Acknowledgments. 2.7 Synthetic Receptors Derived from Combinatorial Techniques2.8 Dynamic Combinatorial Libraries for Receptor Discovery; 2.9 Cooperativity; 2.10 Entropy-Enthalpy Compensation; 2.11 Cross-reactive Arrays; 2.12 Conclusion; References; Chapter 3 Synthetic Receptors for Alkali Metal Cations; 3.1 Complexation of Alkali Metal Cations; 3.1.1 Coordination Complexes, Receptors, and Dynamics; 3.2 The Forces Involved in Complexation; 3.2.1 Enthalpy-Entropy Compensation; 3.2.2 Drawing Structural Conclusions from Binding Constants; 3.3 A Brief Overview of Complexation Constants. 3.4 The Dynamics of the Complexation Process3.4.1 Solvent Effect on Complexation; 3.5 Crown Ethers and Related Receptor Types; 3.5.1 Crown Ethers; 3.5.2 Cryptands; 3.5.3 Spherands; 3.5.4 Calixarenes, Cavitands, and Other Complexing Agents; 3.6 Assessing Complexation; 3.6.1 Calorimetry; 3.6.2 Ion-selective Electrode Studies; 3.6.3 Salt Extraction and Colorimetry; 3.6.4 Comparison of Binding Assays; 3.6.5 Bulk Membrane Transport Rates; 3.6.6 Liposomal Membrane Studies; 3.7 Controlling Transport and Molecular Switching; 3.7.1 Redox Switching; 3.7.2 Photo-switched Transport.
Series Title: Monographs in supramolecular chemistry.
Other Titles: Monographs in Supramolecular Chemistry

Abstract:

An accessible overview of the most effective synthetic receptors within the context of specific applications.  Read more...

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