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首页> 外文期刊>Indian Journal of Chemistry, Section A. Inorganic, Physical, Theoretical & Analytical >Theoretical study of B-11 NMR chemical shifts of prototypical boranes: The case of closo-[B12H12](2-), nest-B11H15, and arachno-B10H16
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Theoretical study of B-11 NMR chemical shifts of prototypical boranes: The case of closo-[B12H12](2-), nest-B11H15, and arachno-B10H16

机译:B-11 NMR化学变换的理论研究原型硼烷:Closo-[B12H12](2-),Nest-B11H15和Arachno-B10H16的情况

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摘要

The structural and electronic dependence of the (11B) chemical shifts for a series of borane structures, namely, closo-[B12H21](2-), nest-[B11H15], and arachno-[B10H16] are investigated using density functional theory calculations. Three types of environments are identified for the borane systems, in increasing order of chemical shielding as: B-H B-H-B B-B-B. The obtained chemical shifts are in good agreement with the available experimental results and reflect the extent of heterogeneity of the electronic environments present in these chemical systems in terms of symmetry and the number of boron cores. In addition, results of molecular quantum similarity studies using similarity descriptors such as overlap and coulomb indices and Euclidean distances are also reported.
机译:使用密度函数理论计算研究(11b)化学偏移的(11b)化学偏移的结构和电子依赖性,即,卷曲[b12h21](2-),巢穴[b11h15]和arachno-[b10h16] 。 在硼烷系统中识别出三种环境,以增加化学屏蔽的顺序为:B-H& B-H-B< B-B-B。 所获得的化学换档与可用的实验结果吻合良好,并反映了在对称性和硼核的数量方面存在于这些化学系统中存在的电子环境的异质性程度。 另外,还报道了使用相似性描述符的分子量子相似性研究,例如重叠和库仑指数和欧几里德距离。

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