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Comprehensive Organic Functional Group Transformations In 6 V Volume 2 Synthesis Carbon With One Heteroatom Attached By A Single Bond Katritzky Alan R Ed Otto Methcohn

  • SKU: BELL-2164516
Comprehensive Organic Functional Group Transformations In 6 V Volume 2 Synthesis Carbon With One Heteroatom Attached By A Single Bond Katritzky Alan R Ed Otto Methcohn
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Comprehensive Organic Functional Group Transformations In 6 V Volume 2 Synthesis Carbon With One Heteroatom Attached By A Single Bond Katritzky Alan R Ed Otto Methcohn instant download after payment.

Publisher: Pergamon
File Extension: PDF
File size: 12.48 MB
Pages: 1286
Author: Katritzky Alan R. (ed.); Otto Meth-Cohn, and Charles W. Rees (Editors-in-Chief)
ISBN: 9780080423234
Language: English
Year: 2003

Product desciption

Comprehensive Organic Functional Group Transformations In 6 V Volume 2 Synthesis Carbon With One Heteroatom Attached By A Single Bond Katritzky Alan R Ed Otto Methcohn by Katritzky Alan R. (ed.); Otto Meth-cohn, And Charles W. Rees (editors-in-chief) 9780080423234 instant download after payment.

Katritzky Alan R. (ed.) Comprehensive Organic Functional Group Transformations in 6 v. Volume 2 Synthesis - Carbon with One Heteroatom Attached by a Single Bond 2003 [pdf 1286sc 1295c. 12.48mb]

This Volume describes all methods for the synthesis of compounds containing acarbon atom singly bonded to a heteroatom substituent. The Volume is arranged in three parts dealing with sp3, sp2 and sp carbon linked to the heteroatoms. For each section careful attention has been given to various features such as substitution patterns, ring effects, strain effects, neighbouring functionality, stereochemistry, etc. which could mediate the synthesis pathway. Emphasis has also been given to the most convenient and practical preparation of the various functional groups. Critical assessment ofthe procedures allows the reader to select methods most appropriate for their needs. In this Volume the heteroatom may also be metallic and therefore reflect a highly polarised bonding arrangement with the carbon substituent. Compounds containing single bonds between carbon and heterofunctional groups constitute the largest class and most commonly transformed organic functional groups.

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