Aza-Crown Macrocycles

Aza-Crown Macrocycles
Title Aza-Crown Macrocycles PDF eBook
Author Jerald S. Bradshaw
Publisher John Wiley & Sons
Total Pages 896
Release 2009-09-17
Genre Science
ISBN 0470188901

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The Chemistry of Heterocyclic Compounds, since its inception, has been recognized as a cornerstone of heterocyclic chemistry. Each volume attempts to discuss all aspects – properties, synthesis, reactions, physiological and industrial significance – of a specific ring system. To keep the series up-to-date, supplementary volumes covering the recent literature on each individual ring system have been published. Many ring systems (such as pyridines and oxazoles) are treated in distinct books, each consisting of separate volumes or parts dealing with different individual topics. With all authors are recognized authorities, the Chemistry of Heterocyclic Chemistry is considered worldwide as the indispensable resource for organic, bioorganic, and medicinal chemists.

Aza-Crown Macrocycles, Volume 51

Aza-Crown Macrocycles, Volume 51
Title Aza-Crown Macrocycles, Volume 51 PDF eBook
Author Jerald S. Bradshaw
Publisher Wiley-Interscience
Total Pages 0
Release 1993-05-17
Genre Science
ISBN 9780471524854

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The Chemistry of Heterocyclic Compounds, since its inception, has been recognized as a cornerstone of heterocyclic chemistry. Each volume attempts to discuss all aspects – properties, synthesis, reactions, physiological and industrial significance – of a specific ring system. To keep the series up-to-date, supplementary volumes covering the recent literature on each individual ring system have been published. Many ring systems (such as pyridines and oxazoles) are treated in distinct books, each consisting of separate volumes or parts dealing with different individual topics. With all authors are recognized authorities, the Chemistry of Heterocyclic Chemistry is considered worldwide as the indispensable resource for organic, bioorganic, and medicinal chemists.

The chemistry of heterocyclic compounds

The chemistry of heterocyclic compounds
Title The chemistry of heterocyclic compounds PDF eBook
Author
Publisher
Total Pages 885
Release 1993
Genre
ISBN

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Crown Ethers and Analogous Compounds

Crown Ethers and Analogous Compounds
Title Crown Ethers and Analogous Compounds PDF eBook
Author M. Hiraoka
Publisher Elsevier
Total Pages 500
Release 2016-05-04
Genre Science
ISBN 1483290875

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Since the discovery of crown ethers by Pedersen in 1967, several thousands of crown ethers and analogous compounds have been synthesized. Their specific characteristics have been investigated and a variety of applications developed. These developments have led to new fields of chemistry called host-guest chemistry and supramolecular chemistry. This book presents the state-of-the-art of the chemistry of crown ethers and analogous compounds. The first chapter provides an orientation in the new fields of chemistry. Chapter 2 reviews advances in synthetic procedures for crown ethers and analogous compounds including azacrown ethers, thiacrown ethers, functionalized crown ethers, cryptands and others. The focus of chapter 3 is on the concept and synthetic strategies for the molecular design of new crown compounds. Chapters 4-7 are concerned with noteworthy topics in the applications of crown compounds. Chapter 4 deals with the application to ion-selective electrodes and liquid chromatography, both of which are the most important targets in the analytical application of crown compounds. One major application of crown ethers is the design and syntheses of artificial molecules which can catalyze a useful synthetic reaction in an enzyme-mimetic reaction manner, through novel non-covalent complexes. The strategies for enzymatic modelling with crown ethers are covered in chapter 5, while chapter 6 presents the principle of amine-selective colour complexation and its application. In chapter 7 switched-on crown ethers that can respond to environmental stimuli are reviewed. The final chapter is devoted to a wide-ranging discussion of developments in macrocyclic polyamine chemistry. Unlike crown ethers, macrocyclic polyamines, bearing nitrogen donor atoms which belong to a soft base, form complexes with ions of transition metals and heavy metals which are classified as soft acids. Therefore, macrocyclic polyamines are expected to have very versatile applications. Scientists in chemistry, biochemistry, physical organic chemistry, pharmaceutical chemistry and industrial chemistry will find this book a helpful summary and a stimulating contribution to research in this specialized field of crown compounds.

Crown Ethers and Cryptands

Crown Ethers and Cryptands
Title Crown Ethers and Cryptands PDF eBook
Author George W. Gokel
Publisher
Total Pages 216
Release 1991
Genre Science
ISBN

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This book introduces the broad and basic principles of crown ether and cryptand chemistry at the advanced undergraduate, graduate and working professional level.

Noncovalent Interactions Between Alkali Metal Cation and Aza/thia-crown Macrocycles

Noncovalent Interactions Between Alkali Metal Cation and Aza/thia-crown Macrocycles
Title Noncovalent Interactions Between Alkali Metal Cation and Aza/thia-crown Macrocycles PDF eBook
Author Calvin A. Austin
Publisher
Total Pages 204
Release 2015
Genre Chemistry, Analytic
ISBN

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Results here suggests that the nitrogen donor atoms macrocycles can selectivity and strongly bind the alkali metal cations in the proper environment similar to oxygen donor atoms macrocycles.

Insights into the Chemistry of Organic Structure-Directing Agents in the Synthesis of Zeolitic Materials

Insights into the Chemistry of Organic Structure-Directing Agents in the Synthesis of Zeolitic Materials
Title Insights into the Chemistry of Organic Structure-Directing Agents in the Synthesis of Zeolitic Materials PDF eBook
Author Luis Gómez-Hortigüela
Publisher Springer
Total Pages 250
Release 2018-03-31
Genre Science
ISBN 3319742892

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This edited volume focuses on the host-guest chemistry of organic molecules and inorganic systems during synthesis (structure-direction). Organic molecules have been used for many years in the synthesis of zeolitic nanoporous frameworks. The addition of these organic molecules to the zeolite synthesis mixtures provokes a particular ordering of the inorganic units around them that directs the crystallization pathway towards a particular framework type; hence they are called structure-directing agents. Their use has allowed the discovery of an extremely large number of new zeolite frameworks and compositions. This volume covers the main aspects of the use of organic molecules as structure-directing agents for the synthesis of zeolites, including first an introduction of the main concepts, then two chapters covering state-of-the-art techniques currently used to understand the structure-directing phenomenon (location of molecules by XRD and molecular modeling techniques). The most recent trends in the types of organic molecules used as structure-directing agents are also presented, including the use of metal-complexes, the use of non-ammonium-based molecules (mainly phosphorus-based compounds) and the role of supramolecular chemistry in designing new large organic structure-directing agents produced by self-aggregation. In addition the volume explores the latest research attempting to transfer the asymmetric nature of organic chiral molecules used as structure-directing agents to the zeolite lattice to produce chiral enantioselective frameworks, one of the biggest challenges today in materials chemistry. This volume has interdisciplinary appeal and will engage scholars from the zeolite community with a general interest in microporous materials, which involves not only zeolite scientists, but also researchers working on metal-organic framework materials. The concepts covered will also be of interest for researchers working on the application of materials after encapsulation of molecules of interest in post-synthetic treatments. Further the work explores the main aspects of host-guest chemistry in hybrid organo-inorganic templated materials, which covers all types of materials where organic molecules are used as templates and are confined within framework-structured inorganic materials (intercalation compounds). Therefore the volume is also relevant to the wider materials chemistry community.