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Probing the structures and bonding of size-selected boron and doped-boron clusters

机译:探测尺寸选择的硼和掺杂 - 硼簇的结构和粘合

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摘要

Because of their interesting structures and bonding and potentials as motifs for new nanomaterials, size-selected boron clusters have received tremendous interest in recent years. In particular, boron cluster anions (B-n(-)) have allowed systematic joint photoelectron spectroscopy and theoretical studies, revealing predominantly two-dimensional structures. The discovery of the planar B-36 cluster with a central hexagonal vacancy provided the first experimental evidence of the viability of 2D borons, giving rise to the concept of borophene. The finding of the B-40 cage cluster unveiled the existence of fullerene-like boron clusters (borospherenes). Metal-doping can significantly extend the structural and bonding repertoire of boron clusters. Main-group metals interact with boron through s/p orbitals, resulting in either half-sandwich-type structures or substitutional structures. Transition metals are more versatile in bonding with boron, forming a variety of structures including half-sandwich structures, metal-centered boron rings, and metal-centered boron drums. Transition metal atoms have also been found to be able to be doped into the plane of 2D boron clusters, suggesting the possibility of metalloborophenes. Early studies of di-metal-doped boron clusters focused on gold, revealing ladder-like boron structures with terminal gold atoms. Recent observations of highly symmetric Ta2B6- and Ln(2)B(n)(-) (n = 7-9) clusters have established a family of inverse sandwich structures with monocyclic boron rings stabilized by two metal atoms. The study of size-selected boron and doped-boron clusters is a burgeoning field of research. Further investigations will continue to reveal more interesting structures and novel chemical bonding, paving the foundation for new boron-based chemical compounds and nanomaterials.
机译:由于其有趣的结构和粘合和潜在的新纳米材料的主题,因此近年来的尺寸选择的硼集群得到了巨大的兴趣。特别地,硼聚类阴离子(B-N( - ))允许系统的关节光电子体光谱和理论研究,揭示主要的二维结构。具有中央六边形空位的平面B-36集群的发现提供了2D硼的活力的第一个实验证据,从而产生了脱臼的概念。 B-40笼式簇的发现揭开了富勒烯的硼簇(硼氏体)的存在。金属掺杂可以显着延伸硼簇的结构和粘合曲目。主群金属通过S / P轨道与硼相互作用,导致半三明治型结构或替代结构。过渡金属与硼键合更通用,形成各种结构,包括半三明治结构,以金属为中心的硼环和金属居中的硼鼓。还发现过渡金属原子能够掺杂到2D硼簇的平面中,表明氟硼烯烯烃的可能性。对金属掺杂硼簇的早期研究集中于金,揭示了具有末端金原子的梯状硼结构。最近对高度对称的TA2B6和LN(2)B(N)(N = 7-9)(n = 7-9)簇的观察已经建立了一系列逆夹层结构,其中通过两个金属原子稳定了单环硼环。尺寸选择的硼和掺杂 - 硼集群的研究是一种新兴的研究领域。进一步的调查将继续揭示更有趣的结构和新型化学粘合,为新的硼基化合物和纳米材料铺平了基础。

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  • 来源
    《Chemical Society Reviews》 |2019年第13期|共42页
  • 作者单位

    Brown Univ Dept Chem Providence RI 02912 USA;

    Henan Normal Univ Sch Chem &

    Chem Engn Henan Key Lab Boron Chem &

    Adv Energy Mat Xinxiang 453007 Henan Peoples R China;

    Shanxi Univ Inst Mol Sci Nanocluster Lab Taiyuan 030006 Peoples R China;

    Utah State Univ Dept Chem &

    Biochem Logan UT 84322 USA;

    Tsinghua Univ Minist Educ Dept Chem Beijing 100084 Peoples R China;

    Brown Univ Dept Chem Providence RI 02912 USA;

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  • 正文语种 eng
  • 中图分类 化学;
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