Description

Book Synopsis
Supramolecular materials have a great number of applications due to the reversibility of their non-covalent molecular interactions, such as reversible hydrogen bonding, host–guest interactions and electrostatic interactions. This book provides a comprehensive source of information on the structure and function of organic and metal–organic supramolecular materials. The chapters of this book provide an overview of supramolecular material assembly at various scales, including the formation of 2D polymers and molecular cages. The role of intermolecular interactions in solid and solution state self-assembly is discussed, as is the role of mechanochemistry on molecular and supramolecular architectures. Finally, novel applications of these materials in molecular recognition, catalysis, light harvesting and environmental remediation are covered. Functional Supramolecular Materials will be of interest to graduate students and researchers in academia and industry in the fields of supramolecular chemistry and functional materials science.

Table of Contents
Surface Self-assembly of Functional Supramolecular Networks; Designing Soft Supramolecular Materials Using Intermolecular Interactions; Anion Binding in Tripodal Receptors and Supramolecular Capsular Dimeric Assemblies; Functional Molecular and Supramolecular Materials for Electron Transfer Reactions and their Applications; Influence of Supramolecular Interactions on the Solid-state Photoreactivity of Metal Complexes; Metal-Organic Frameworks with Tunable Electrical and Optical Properties; Conducting Framework Materials; Functional Metal-organic Frameworks for Enzyme/Protein Immobilization; Porous Metal Organic Polygons and Polyhedra - Intrinsic vs. Extrinsic Porosity; Functional Metallo-supramolecular Polyhedral Capsules and Cages; Designing Functional Porous Organic Frameworks for Gas Storage and Separation; Gated and Stepwise Sorption Processes in Functional Metal-organic Frameworks

Functional Supramolecular Materials: From

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    A Hardback by Rahul Banerjee

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      Publisher: Royal Society of Chemistry
      Publication Date: Publication Date: 09/05/2017
      ISBN13: 9781782625407, 978-1782625407
      ISBN10: 1782625402

      Description

      Book Synopsis
      Supramolecular materials have a great number of applications due to the reversibility of their non-covalent molecular interactions, such as reversible hydrogen bonding, host–guest interactions and electrostatic interactions. This book provides a comprehensive source of information on the structure and function of organic and metal–organic supramolecular materials. The chapters of this book provide an overview of supramolecular material assembly at various scales, including the formation of 2D polymers and molecular cages. The role of intermolecular interactions in solid and solution state self-assembly is discussed, as is the role of mechanochemistry on molecular and supramolecular architectures. Finally, novel applications of these materials in molecular recognition, catalysis, light harvesting and environmental remediation are covered. Functional Supramolecular Materials will be of interest to graduate students and researchers in academia and industry in the fields of supramolecular chemistry and functional materials science.

      Table of Contents
      Surface Self-assembly of Functional Supramolecular Networks; Designing Soft Supramolecular Materials Using Intermolecular Interactions; Anion Binding in Tripodal Receptors and Supramolecular Capsular Dimeric Assemblies; Functional Molecular and Supramolecular Materials for Electron Transfer Reactions and their Applications; Influence of Supramolecular Interactions on the Solid-state Photoreactivity of Metal Complexes; Metal-Organic Frameworks with Tunable Electrical and Optical Properties; Conducting Framework Materials; Functional Metal-organic Frameworks for Enzyme/Protein Immobilization; Porous Metal Organic Polygons and Polyhedra - Intrinsic vs. Extrinsic Porosity; Functional Metallo-supramolecular Polyhedral Capsules and Cages; Designing Functional Porous Organic Frameworks for Gas Storage and Separation; Gated and Stepwise Sorption Processes in Functional Metal-organic Frameworks

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