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首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >The VCD method - A simple and reliable way to distinguish cage C and B atoms in (hetero)carborane structures determined crystallographically
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The VCD method - A simple and reliable way to distinguish cage C and B atoms in (hetero)carborane structures determined crystallographically

机译:VCD方法-一种简单可靠的方法来区分晶体学确定的(杂)碳烷结构中的笼型C和B原子

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摘要

Replacing a boron vertex in a [B_nH_n]~(2-) cluster with a smaller atom, e.g. carbon, results in the distance from that atom to the polyhedral centroid being shorter. This forms the basis of a simple but very effective method of distinguishing between B and C atoms in (hetero)carboranes that have been studied crystallographically, the Vertex-to-Centroid Distance (VCD) method. Examples of well-characterised icosahedral and sub-icosahedral closo carboranes, nido carboranes, icosahedral metallacarboranes and supraicosahedral metallacarboranes are used to illustrate the generality of the VCD method. In this process a number of structures are identified in which the method suggests B/C disorder not previously recognised and some structures in which it appears that a cage C atom has been wrongly assigned. The largest sub-group of heterocarboranes is the family of 3,1,2-MC_2B_9 compounds, and for these species consideration of Exopolyhedral Ligand Orientation (ELO) can sometimes be used to quickly suggest when a literature structure is suspect in terms of cage C atom positioning. The crystal structure of one such compound, 3,3-NO _3-3-PPh_3-3,1,2-closo-RhC_2B_9H _11, has been redetermined and the correct location of the cage C atoms established.
机译:用较小的原子,例如[B_nH_n]〜(2-)簇替换硼顶点。碳,导致该原子到多面体质心的距离更短。这构成了一种简单但非常有效的方法,用于区分(杂)碳氢化合物中的B和C原子(已通过晶体学方法进行研究),即顶点到中心的距离(VCD)方法。具有典型特征的二十面体和二十面体Closo碳硼烷,Nido碳硼烷,二十面体金属碳硼烷和超二十面体金属碳硼烷的例子用于说明VCD方法的一般性。在该过程中,鉴定出许多结构,其中该方法表明以前未认识到B / C紊乱,并且某些结构中似乎笼碳原子已被错误分配。异碳氢化合物的最大亚类是3,1,2-MC_2B_9化合物,对于这些物种,有时考虑使用外多面体配体取向(ELO)来快速暗示笼型C的文献结构是否可疑。原子定位。已经重新确定了一种这样的化合物3,3-NO _3-3-PPh_3-3,1,2-closo-RhC_2B_9H _11的晶体结构,并确定了笼状C原子的正确位置。

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