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Showing 1 - 2 of
2 matches in All Departments
In 1972, a very powerful catalytic cycle for carbon-carbon bond
formation was 2 first discovered by the coupling reaction of
Grignard reagents at the sp -carbon. Over the past 30 years, the
protocol has been substantially improved and expanded to other
coupling reactions of Li, B, N, O, Al, Si, P, S, Cu, Mn, Zn, In,
Sn, and Hg compounds. These reactions provided an indispensable and
simple methodology for preparative organic chemists. Due to the
simplicity and rel- bility in the carbon-carbon, carbon-heteroatom,
and carbon-metalloid bo- formations, as well as high efficiency of
the catalytic process, the reactions have been widely employed by
organic chemists in various fields. Application of the protocol
ranges from various syntheses of complex natural products to the
preparation of biologically relevant molecules including drugs, and
of sup- molecules, and to functional materials. The reactions on
solid surfaces allow robot synthesis and combinatorial synthesis.
Now, many organic chemists do not hesitate to use transition metal
complexes for the transformation of org- ic molecules. Indeed,
innumerable organic syntheses have been realized by the catalyzed
reactions of transition metal complexes that are not achievable by
t- ditional synthetic methods. Among these, the metal-catalyzed
cross-coupling reactions have undoubtedly contributed greatly to
the development of such a new area of "metal-catalyzed organic
syntheses." An excellent monograph for the cross-coupling reactions
and other met- catalyzed C-C bond-forming reactions recently
appeared in Metal-catalyzed Cross-coupling Reactions (Wiley-VCH,19
In 1972, a very powerful catalytic cycle for carbon-carbon bond
formation was 2 first discovered by the coupling reaction of
Grignard reagents at the sp -carbon. Over the past 30 years, the
protocol has been substantially improved and expanded to other
coupling reactions of Li, B, N, O, Al, Si, P, S, Cu, Mn, Zn, In,
Sn, and Hg compounds. These reactions provided an indispensable and
simple methodology for preparative organic chemists. Due to the
simplicity and rel- bility in the carbon-carbon, carbon-heteroatom,
and carbon-metalloid bo- formations, as well as high efficiency of
the catalytic process, the reactions have been widely employed by
organic chemists in various fields. Application of the protocol
ranges from various syntheses of complex natural products to the
preparation of biologically relevant molecules including drugs, and
of sup- molecules, and to functional materials. The reactions on
solid surfaces allow robot synthesis and combinatorial synthesis.
Now, many organic chemists do not hesitate to use transition metal
complexes for the transformation of org- ic molecules. Indeed,
innumerable organic syntheses have been realized by the catalyzed
reactions of transition metal complexes that are not achievable by
t- ditional synthetic methods. Among these, the metal-catalyzed
cross-coupling reactions have undoubtedly contributed greatly to
the development of such a new area of "metal-catalyzed organic
syntheses." An excellent monograph for the cross-coupling reactions
and other met- catalyzed C-C bond-forming reactions recently
appeared in Metal-catalyzed Cross-coupling Reactions (Wiley-VCH,19
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