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Название: Catalytic Asymmetric Synthesis

Автор: Группа авторов

Издательство: John Wiley & Sons Limited

Жанр: Химия

Серия:

isbn: 9781119736417

isbn:

СКАЧАТЬ style="font-size:15px;">      883 889

      884 890

      885  891

      CATALYTIC ASYMMETRIC SYNTHESIS

       Fourth Edition

       Edited By

       TAKAHIKO AKIYAMA

      Department of Chemistry

      Gakushuin University

      Tokyo

       IWAO OJIMA

      Department of Chemistry

      SUNY Stony Brook

      New York

      This fourth edition first published 2022

      © 2022 by John Wiley & Sons, Inc.

      Edition history Catalytic Asymmetric Synthesis, 1st Edition, 1995, Ojima. ISBN: 978‐0‐471‐18625‐0 Catalytic Asymmetric Synthesis, 2nd Edition, 2004, Ojima. ISBN: 978‐0‐471‐22054‐1 Catalytic Asymmetric Synthesis, 3rd Edition, 2010, Ojima. ISBN 978‐0‐470‐17577‐4

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      The right of Takahiko Akiyama and Iwao Ojima to be identified as the authors of the editorial material in this work has been asserted in accordance with law.

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       Library of Congress Cataloging‐in‐Publication Data applied for:

      Hardback ISBN: 9781119736394

      Cover Design: Wiley

      Cover Images: © AVIcon/Shutterstock; Courtesy of Takahiko Akiyama

      The first, second, and third editions of Catalytic Asymmetric Synthesis published in 1993, 2000, and 2010, respectively, were warmly received by research communities in academia and industries, from graduate students, research associates, faculty, staff, senior researchers, and others. Catalytic Asymmetric Synthesis has become a common tool for the synthesis of enantiopure compounds in both industry and academia.

      The Nobel Prize in Chemistry 2001 was given to W. Knowles, K. B. Sharpless, and R. Noyori for their outstanding contributions to the advancement of catalytic asymmetric synthesis, using transition‐metal catalysis. Quite recently it was announced that Benjamin List and David MacMillan won the Nobel Prize in Chemistry 2021 for their work on the development of asymmetric organocatalysis, using small organic molecule. This is the second Nobel Prize given to the field of asymmetric catalysis, following the Nobel Prize in Chemistry 2001, which clearly indicates the profound importance of asymmetric catalysis.

      More than 10 years have passed after the third edition was published, and 2010s has witnessed revolutionary advancement of asymmetric catalysis. Therefore, the publication of the fourth edition of this book series, capturing the highly innovative progress in this field, deemed in demand and was fully justified. In order to cover the revolutionary advances in the last decade, Takahiko Akiyama joined as the leading editor in this fourth edition.

      In the first and second editions, chiral metal‐based catalysts played the central roles for the asymmetric synthesis because transition‐metal‐catalyzed enantioselective reactions were extensively studied, in particular, in the 1980s and 1990s. Organocatalysis, Lewis and Brønsted acids, C–H activation, carbon‐heteroatom bond forming reactions, and enzyme‐catalyzed reactions were introduced in the third edition.

      After 2010, in addition to transition‐metal catalyzed reactions, organocatalysis, including Brønsted acids and C–H activation reactions, has been making remarkable advances. Photoredox catalysis emerged as a useful new synthetic reaction mainly after 2008 and has been rapidly growing and has become a critical methodology. Because the chapters in the third edition are still very informative and the methodologies described therein are still inspiring and stimulating even today, those methodologies are considered “classics” in catalytic asymmetric synthesis.