Science of Synthesis: Catalytic Transformations via C-H Acti

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The reference work "Science of Synthesis: Catalytic Transformations via C-H Activation" covers the state of the art in C-H activation chemistry. Experts in the field present the best synthetic methods including typical or general experimental procedures. As such, this two volume set can serve as both a basis for the practical application of the techniques discussed, and as an educational resource to lay the foundations for future research.Volume 1 concerns the formation of C-C bonds by both arene and hetarene C-H activation. For the arenes the material is subdivided into arylation [using palladium(0), palladium(II)/palladium(IV), palladium(II), and ruthenium(II) catalysts], vinylation [using various palladium and ruthenium(III) catalysts], and alkylation (using various metal catalysts in combination with either functionalized alkanes or alkenes). For the hetarenes, the related coupling strategies are covered as a single topic using a variety of metal catalysts and coupling partners.
The reference work "Science of Synthesis: Catalytic Transformations via C-H Activation" covers the state of the art in C-H activation chemistry. Experts in the field present the best synthetic methods including typical or general experimental procedures. As such, this two volume set can serve as both a basis for the practical application of the ...
<p>Introduction<br>1.1 C—C Bond Formation by Arene C—H Activation<br>1.1.1 Arylation Using a Palladium(0) Catalyst<br>1.1.2 Arylation Using a Palladium(II)/Palladium(IV) Catalyst System<br>1.1.3 Arylation Using a Palladium(II) Catalyst<br>1.1.4 Arylation Using a Ruthenium(II) Catalyst<br>1.1.5 Vinylation Using a a Palladium Catalyst<br>1.1.6 Vinylation Using a Rhodium(III) Catalyst<br>1.1.7 Metal-Catalyzed C—H Alkylation Using RX Compounds<br>1.1.8 Metal-Catalyzed Alkylation Using Alkenes<br>1.2 C—C Bond Formation by Hetarene C—H Activation</p>

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