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Copper Catalysis for Synthesizing Main‐Group Organometallics Containing B Sn or Si

机译:铜催化合成含BSn或Si的主族有机金属

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摘要

A copper complex has proven to be a potent catalyst for forming a C–B bond via diborylation of arynes and alkynes, affording vic‐diborylarenes and vic‐diborylalkenes with high efficiency. A boryl‐substituted organocopper species, which is intermediately generated in the diborylation, has been found to be captured by a tin or a carbon electrophile, leading to three‐component borylstannylation or carboboration, in which C–B and C–Sn (or C) bonds are constructed simultaneously. Furthermore, reducing the Lewis acidity of the boron center with 1,8‐diaminonaphthalene decisively alters the regiochemical behavior of the borylcopper species, enabling the installation of a boryl moiety to occur at an internal carbon of terminal alkynes in borylstannylation and protoboration. Copper catalysis for C–Sn and C–Si bond‐forming processes via distannylation, hydrostannylation and silylstannylation, as well as silver catalysis for a C–B bond‐forming reaction, is also described.
机译:事实证明,铜络合物是通过芳烃和炔烃的二甲酰化作用形成C-B键的有效催化剂,可高效率地提供vic-diborylarenes和vic-diborylalkenes。发现在二硼化中产生的硼取代的有机铜物质被锡或亲电子碳捕获,导致三组分的硼烷基锡烷基化或碳硼化,其中C–B和C–Sn(或C )债券是同时建立的。此外,用1,8-二氨基萘降低硼中心的路易斯酸度可决定性地改变硼铜物种的区域化学行为,从而使硼基部分的安装在末端炔烃的内部碳原子上发生甲硼烷基锡烷基化和原硼氢化。还描述了铜通过脱甲锡,加氢甲锡化和甲硅烷基甲锡化形成C-Sn和C-Si键的过程,以及银对C-B键形成反应的催化作用。

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