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Boron avoids cycloalkane-like structures in the LinBnH2n series

机译:硼避免了LinBnH2n系列中类似环烷的结构

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摘要

The stability of the LinBnH2n (n = 3-6) series was analyzed using quantum chemical calculations, and it was found that cyclic isomers are not energetically favored. This is different to what happens in their organic counterparts (CnH2n), where cyclopentane (C5H10) and cyclohexane (C6H12) are the low-lying isomers. Apparently, aromaticity is a key-stabilizing factor that needs to be considered for designing stable lithium-boron hydride analogues of cyclic organic compounds. This is verified in the Li3B3H3+ system, which has been designed as the smallest aromatic carbocation (C3H3+) analogue. The global minimum structure of Li3B3H3+ contains a triangular B3H32- moiety, which has structural and chemical bonding features similar to its organic counterpart. Besides, this new cluster is classified as aromatic according to both the 4n + 2 Huckel rule and the analysis of the induced magnetic field. This theoretical evidence leads us to propose this cluster as a viable target for experimental detection in the gas phase.
机译:使用量子化学计算分析了LinBnH2n(n = 3-6)系列的稳定性,发现环状异构体在能量上不利。这与有机对应物(CnH2n)的情况不同,在有机对应物中,环戊烷(C5H10)和环己烷(C6H12)是低位异构体。显然,芳香性是设计环状有机化合物的稳定锂硼氢化物类似物时需要考虑的关键稳定因素。 Li3B3H3 +系统对此进行了验证,该系统已被设计为最小的芳族碳正离子(C3H3 +)类似物。 Li3B3H3 +的整体最小结构包含一个三角形的B3H32-部分,其结构和化学键合特征与其有机对应物相似。此外,根据4n + 2 Huckel规则和对感应磁场的分析,该新簇被归为芳香族。这一理论证据使我们提出将该簇作为气相实验检测的可行目标。

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