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硼团簇中 B-C、B-P、B-N 和 B-S 键的生成方法。

Methods to produce B-C, B-P, B-N and B-S bonds in boron clusters.

机构信息

Institut de Ciència de Materials de Barcelona (ICMAB-CSIC), Campus de la U.A.B., E-08193 Bellaterra-Barcelona, Spain.

出版信息

Chem Soc Rev. 2013 Apr 21;42(8):3318-36. doi: 10.1039/c2cs35441a.

Abstract

Boranes, heteroboranes and metallacarboranes, all named as boron clusters, offer an alternative to typical organic molecules or organic molecular materials. Carbon and boron share the important property of self-catenation thus these elements can produce individually large and sophisticated molecules. Boron clusters and organic molecules display electronic, physical, chemical and geometrical characteristics manifestly different. These differences highlight the complementarity of organic molecules and boron clusters, and therefore the feasibility or necessity to produce hybrid molecules incorporating both types of fragments. To join these two types of fragments, or alternatively these two types of molecular compounds, tools are needed. In this review the current methods of producing boron clusters with carbon, B-C, nitrogen, B-N, phosphorus, B-P and sulphur bonds, B-S, are indicated. As there are many existing borane clusters of different sizes, heteroboranes and metallacarboranes, the revision of methods to generate the B-C, B-P, B-S, and B-N bonds has been restricted to the most widely used boron clusters; B12H12, dianionic and an example of a borane, 1,2-C2B10H12, neutral and an example of a heteroborane, and Co(C2B9H11)2, monoanionic and an example of a metallacarborane.

摘要

硼烷、杂硼烷和金属碳硼烷,均被命名为硼簇,为典型的有机分子或有机分子材料提供了一种替代物。碳和硼具有自键合的重要性质,因此这些元素可以产生单独的、大而复杂的分子。硼簇和有机分子显示出明显不同的电子、物理、化学和几何特性。这些差异突出了有机分子和硼簇的互补性,因此产生包含这两种类型片段的混合分子是可行的或必要的。为了连接这两种类型的片段,或者替代这两种类型的分子化合物,需要工具。在这篇综述中,指出了用碳、B-C、氮、B-N、磷、B-P 和硫键、B-S 生成硼簇的当前方法。由于存在许多不同大小的硼烷簇、杂硼烷和金属碳硼烷,生成 B-C、B-P、B-S 和 B-N 键的方法的修订仅限于最广泛使用的硼簇;B12H12,二阴离子和硼烷的一个例子,1,2-C2B10H12,中性和杂硼烷的一个例子,以及Co(C2B9H11)2,一阴离子和金属碳硼烷的一个例子。

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