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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >The structural landscape in 14-vertex clusters of silicon, M@Si-14: when two bonding paradigms collide
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The structural landscape in 14-vertex clusters of silicon, M@Si-14: when two bonding paradigms collide

机译:14-顶点硅簇中的结构景观,M @ Si-14:当两个键合范例碰撞时

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摘要

The structural chemistry of the title clusters has been the source of controversy in the computational literature because the identity of the most stable structure appears to be pathologically dependent on the chosen theoretical model. The candidate structures include a D-3h-symmetric 'fullerene-like' isomer with 3-connected vertices (A), an 'arachno' architecture (B) and an octahedral isomer with high vertex connectivities typical of 'closo' electron-deficient clusters (C). The key to understanding these apparently very different structures is the fact that they make use of the limited electron density available from the endo-hedral metal in very different ways. Early in the transition series the favoured structure is the one that maximises transfer of electron density from the electropositive metal to the cage whereas for later metals it is the one that minimises repulsions with the increasingly core-like d electrons. The varying role of the d electrons across the transition series leads directly to strong functional dependency, and hence to the controversy in the literature.
机译:标题集群的结构化学是计算文献中争议的争论来源,因为最稳定的结构的身份似乎在病理上取决于所选择的理论模型。候选结构包括D-3H对称的“富勒烯样”异构体,具有3个连接的顶点(A),'Arachno'结构(B)和具有高顶点连接性的八面体异构体,其典型的'Closo'电子缺陷簇(C)。理解这些显然非常不同的结构的关键是它们在非常不同的方式中利用了内孔金属的有限电子密度。早期在过渡串中,有利的结构是最大化从电动金属转移到笼子的电子密度,而对于后来金属,它是用越来越核心的D电子的排斥来最小化的。 D电子跨越过渡系列的不同作用直接引发到强大的功能依赖性,从而导致文献中的争议。

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