Science of Synthesis: Cross Coupling and Heck-Type Reactions Vol. 1

Science of Synthesis: Cross Coupling and Heck-Type Reactions Vol. 1
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C-C Cross Coupling Using Organometallic Partners, Wissenschaftler
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Artikel-Nr:
9783131790514
Veröffentl:
2014
Seiten:
1052
Autor:
Gary A. Molander
eBook Typ:
PDF
eBook Format:
Reflowable
Kopierschutz:
Digital Watermark [Social-DRM]
Sprache:
Englisch
Beschreibung:

In "Science of Synthesis: Cross Coupling and Heck-Type Reactions", expert authors present and discuss the best and most reliable methods currently available for the formation of new carbon-carbon and carbon-heteroatom bonds using these reactions, highlighted with experimental procedures. The three volumes provide an extensive overview of the ...

In Science of Synthesis: Cross Coupling and Heck-Type Reactions, expert authors present and discuss the best and most reliable methods currently available for the formation of new carbon-carbon and carbon-heteroatom bonds using these reactions, highlighted with representative experimental procedures. Together, the three volumes of Cross Coupling and Heck-Type Reactions provide an extensive overview of the current state of the art in this field of central importance in modern chemistry, and are an invaluable resource for the practicing synthetic organic chemist.

This volume covers carbon-carbon bond formation, and, as a widely acknowledged recognition of the importance of the transformations described herein, virtually all of the chemistry described in this volume has achieved "Name Reaction" stature, and the chapters are organized accordingly. Thus, Suzuki-Miyaura reactions, Hiyama cross coupling, Stille coupling, Negishi coupling, and finally Kumada coupling are discussed in sequence, with a particular emphasis on breadth of scope rather than detailed minutiae.

This volume is part of a 3-volume set:

Cross Coupling and Heck-Type Reactions Workbench Edition

General information about Science of Synthesis

<p>1.1 Boron<br>1.1.1 Arylboron Cross-Coupling Reactions<br>1.1.1.1 Arylboronic Acid Cross-Coupling Reactions<br>1.1.1.2 Arylboronic Acid Derivative Cross-Coupling Reactions<br>1.1.2 Hetarylboron Cross-Coupling Reactions<br>1.1.3 Alkenylboron Cross-Coupling Reactions<br>1.1.4 Alkylboron Cross-Coupling Reactions<br>1.1.5 Alkynyl- and Allylboron Cross-Coupling Reactions<br>1.2 Silicon<br>1.2.1 Arylsilicon Cross-Coupling Reactions<br>1.2.2 Hetarylsilicon Cross-Coupling Reactions<br>1.2.3 Alkenylsilicon Cross-Coupling Reactions<br>1.2.4 Alkylsilicon Cross-Coupling Reactions<br>1.2.5 Alkynyl- and Acylsilicon Cross-Coupling Reactions<br>1.3 Tin<br>1.3.1 Organotin Cross-Coupling Reactions<br>1.4 Zinc<br>1.4.1 Arylzinc Cross-Coupling Reactions<br>1.4.2 Hetarylzinc Cross-Coupling Reactions<br>1.4.3 Alkenylzinc Cross-Coupling Reactions<br>1.4.4 Alkylzinc Cross-Coupling Reactions<br>1.4.5 Alkynyl-, Benzyl-, and Propargylzinc Cross-Coupling Reactions<br>1.5 Magnesium<br>1.5.1 Aryl-, Hetaryl-, and Alkenylmagnesium Cross-Coupling Reactions<br>1.5.2 Alkyl- and Alkynylmagnesium Cross-Coupling Reactions</p>

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