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Silicon in Organic, Organometallic, and Polymer Chemistry - ISBN 9780471196587

Silicon in Organic, Organometallic, and Polymer Chemistry

ISBN 9780471196587

Autor: Michael A. Brook

Wydawca: Wiley

Dostępność: 3-6 tygodni

Cena: 1 206,45 zł

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ISBN13:      

9780471196587

ISBN10:      

0471196584

Autor:      

Michael A. Brook

Oprawa:      

Hardback

Rok Wydania:      

2000-01-26

Ilość stron:      

704

Wymiary:      

247x170

Tematy:      

PN

A comprehensive, up–to–date reference to synthetic applications of organosilicon chemistry Organic, organometallic, and polymer chemistry as well as materials science all utilize silicon in various forms, yet there is little cross–fertilization of ideas and applications among the disciplines. This book presents a much–needed overview of silicon chemistry, allowing fundamental and applied scientists to take full advantage of progress made within and outside their primary fields of expertise. With an emphasis on the preparation and reactivity of silicon compounds in organic, organometallic, and polymer chemistry, the author examines a broad range of useful topics–from mechanisms to syntheses of and syntheses using different organofunctional silanes. Numerous schemes as well as up–to–date examples from academia and industry will help readers to solve current synthetic problems and explore ideas for future research. Clear, concise coverage includes:
∗ The mechanistic basis for the development of new silicon–based reactions
∗ Formation and cleavage of silane reagents and functional siliconheteroatom compounds
∗ Silicones, silica, polysilanes, and other silicon–containing polymers
∗ Properties of molecules containing silicon, including bioactivity
∗ Methods for the preparation of Si–C compounds
∗ Silicon in organic synthesis
∗ An extensive functional group index for easy access to functional group transformations

Spis treści:
FUNDAMENTALS OF SILICON REACTIVITY: REACTIVE INTERMEDIATES AND REACTION MECHANISMS.
Organosilanes: Where to Find Them, What to Call Them, How to Detect Them.
Atomic and Molecular Properties of Silicon.
Silicon–Based Reactive Intermediates.
Extracoordination at Silicon.
Reaction Mechanisms for Nucleophilic Substitution at Silicon.
THE FORMATION AND CLEAVAGE OF NON–CARBON BONDS T O SILICON: APPLICATIONS IN ORGANIC AND POLYMER CHEMISTRY.
Silicon and Transition Metal Chemistry.
Hydrosilanes as Reducing Agents.
Replacing H with Si: Silicon–Based Reagents.
Silicones.
Siloxanes Based on T and Q Units.
Other Silicon–Containing Polymers.
THE FORMATION AND CLEAVAGE OF SILICON–CARBON BONDS: APPLICATIONS IN ORGANIC SYNTHESIS.
Formation of Si–C Bonds: The Synthesis of Functional Organosilanes.
Silicon in a Biological Environment.
Silicon in the Organic World: Electronic Effects of Silyl Groups.
Rearrangements.
Cleavage of Si–C Bonds.
Indices of Functional Group Transformations.
Subject Index.

Okładka tylna:
A comprehensive, up–to–date reference to synthetic applications of organosilicon chemistry Organic, organometallic, and polymer chemistry as well as materials science all utilize silicon in various forms, yet there is little cross–fertilization of ideas and applications among the disciplines. This book presents a much–needed overview of silicon chemistry, allowing fundamental and applied scientists to take full advantage of progress made within and outside their primary fields of expertise. With an emphasis on the preparation and reactivity of silicon compounds in organic, organometallic, and polymer chemistry, the author examines a broad range of useful topics–from mechanisms to syntheses of and syntheses using different organofunctional silanes. Numerous schemes as well as up–to–date examples from academia and industry will help readers to solve current synthetic problems and explore ideas for future research. Clear, concise coverage includes:
∗ The mechanistic basis for the development of new silicon–based reactions
∗ Formation and cleavage of silane reagents and functional siliconheteroatom compounds
∗ Silicones, silica, polysilanes, and other silicon–containing polymers∗ Properties of molecules containing silicon, including bioactivity
∗ Methods for the preparation of Si–C compounds
∗ Silicon in organic synthesis
∗ An extensive functional group index for easy access to functional group transformations

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