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Probing the Planar Tetra-, Penta-, and Hexacoordinate Carbon in Carbon-Boron Mixed Clusters Yong Pei and Xiao Cheng Zeng

机译:碳硼混合团簇中平面四,五和六配位碳的探测裴勇,曾晓成

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摘要

The concept of planar hypercoordinate (e.g., penta- and hexacoordinate) carbons is intriguing [Exner, K.; Schleyer, P. v. R. Science 2000, 290, 1937] as it is neither compatible with the standard rule of three-dimensional chemical bonding nor with the maximum tetracoordination. Herein we undertake a comprehensive study of the planar tetra- (ptC), penta- (ppC), and hexacoordinate carbon (phC) by covering the whole family of carbon-boron mixed clusters C_(m=1-4)B_(n=4-8) and their anions. The potential energy surface of every carbon-boron cluster is sampled by using the basin-hopping global search algorithm coupled with ab initio geometry optimization. A large number of planar tetra-, penta-, and hexacoordinate carbon (local-minimum) structures are obtained. Several structures such as the phC consisting of C_2B_5, C_2B_5~-, etc. are reported for the first time. In particular, a ptC corresponding to the global minimum of CB_4 is revealed, which appears to be highly stable for future synthesis. The boron-centered isomers are generally the more stable structures for planar multicoordinate carbons (ptC, ppC, and phC). The planar tetra-, penta-, and hexacoordinate boron are the prevalent structural motifs in low-lying isomers of the carbon-boron clusters. However, stability of the ptC and ppC units can be reinforced over the boron-centered isomers by attaching proper hydrocarbon unit -(CH)_n- to form the so-called "hyparenes" [Wang, Z. X.; Schleyer, P. v. R. Science 2001, 292, 2465]). A new hyparene molecule is suggested for future synthesis of novel planar hypercoordinate carbon compounds.
机译:平面超坐标(例如,五坐标和六坐标)碳的概念很有意思[Exner,K .; Schleyer,P. v。R. Science 2000,290,1937],因为它既不兼容三维化学键的标准规则,也不兼容最大四配位。在这里,我们通过覆盖碳硼混合簇C_(m = 1-4)B_(n =的整个族,对平面四(ptC),五(ppC)和六配位碳(phC)进行了全面研究。 4-8)及其阴离子。通过使用盆地跳跃全局搜索算法和从头算几何优化,对每个碳硼簇的势能面进行采样。获得了大量的平面四,五和六配位碳(局部最小值)结构。首次报道了由C_2B_5,C_2B_5〜-等组成的phC等几种结构。尤其是,揭示了一个对应于CB_4全局最小值的ptC,它对于未来的合成似乎非常稳定。以硼为中心的异构体通常是平面多配位碳(ptC,ppC和phC)更稳定的结构。平面四,五和六配位硼是碳-硼团簇低洼异构体中普遍的结构基序。然而,通过连接适当的烃单元-(CH)_n-以形成所谓的“杂芳烃”,可以在以硼为中心的异构体上增强ptC和ppC单元的稳定性。 Schleyer,P. v。R. Science 2001,292,2465]。提出了一种新的肝素分子,用于将来合成新型平面超配位碳化合物。

著录项

  • 来源
    《Journal of the American Chemical Society》 |2008年第8期|p.2580-2592|共13页
  • 作者

    Yong pei; xiao Cheng Zeng;

  • 作者单位
  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
  • 关键词

  • 入库时间 2022-08-18 03:19:28

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