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Planar B-41(-) and B-42(-) clusters with double-hexagonal vacancies

机译:平面B-41(-)和B-42(-)集群六角双空缺

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摘要

Since the discovery of the B-40 borospherene, research interests have been directed to the structural evolution of even larger boron clusters. An interesting question concerns if the borospherene cages persist in larger boron clusters like the fullerenes. Here we report a photoelectron spectroscopy (PES) and computational study on the structures and bonding of B-41(-) and B-42(-), the largest boron clusters characterized experimentally thus far. The PE spectra of both clusters display broad and complicated features, suggesting the existence of multiple low-lying isomers. Global minimum searches for B-41(-) reveal three low-lying isomers (I-III), which are all related to the planar B-40(-) structure. Isomer II (C-s, (1)A ') possessing a double hexagonal vacancy is found to agree well with the experiment, while isomers I (C-s, (3)A '') and III (C-s, (1)A ') both with a single hexagonal vacancy are also present as minor isomers in the experiment. The potential landscape of B-42(-) is found to be much more complicated with numerous low-lying isomers (VII-XII). The quasi-planar structure VIII (C-1, (2)A) containing a double hexagonal vacancy is found to make major contributions to the observed PE spectrum of B-42(-), while the other low-lying isomers may also be present to give rise to a complicated spectral pattern. Chemical bonding analyses show isomer II of B-41(-) (C-s, (1)A ') and isomer VIII of B-42(-) (C-1, (2)A) are pi aromatic, analogous to that in the polycyclic aromatic hydrocarbon C27H13+ (C-2v, (1)A(1)). Borospherene cage isomers are also found for both B-41(-) and B-42(-) in the global minimum searches, but they are much higher energy isomers.
机译:自发现B-40 borospherene,已经针对感兴趣的研究更大的硼的构造演化集群。borospherene笼子坚持大的硼集群富勒烯。光电子能谱(PES)计算研究结构和成键B-41(-)和B-42(-),最大的硼集群特征实验。两个集群的PE光谱显示广泛复杂的特性,表明的存在多个低洼的同分异构体。搜索B-41(-)揭示三个低洼同分异构体(》),这都是相关的平面B-40(-)结构。拥有双重六角空置发现与实验吻合较好,而我同分异构体(c,(3)”)和3 (c,(1)“)都有单一的六角空置也存在小同分异构体的实验。景观的B-42(-)被发现更多复杂的许多地势低洼的同分异构体(VII-XII)。(2)包含双六角空缺观察发现做出重大贡献PE的B-42(-),而其他低洼同分异构体也可能给上升到一个复杂的光谱模式。分析显示B-41异构体二世(-)(c,(1)”)和异构体八世B-42(-)(颈- 1,(2))是π多环芳香,类似于芳族烃C27H13 + (C-2v,(1)(1))。Borospherene笼同分异构体也发现B-41(-)和B-42(-)在全球最低搜索,但它们更高的能量同分异构体。

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  • 来源
    《Nanoscale》 |2019年第48期|23286-23295|共10页
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  • 原文格式 PDF
  • 正文语种 英语
  • 中图分类 Online;
  • 关键词

    isomers; Hexagon; Global Minimum;

    机译:同分异构体,六角;全球最低;

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