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硼烷衍生物:一类新型的超强卤族和超卤族元素。

Borane derivatives: a new class of super- and hyperhalogens.

机构信息

Department of Physics and Astronomy, Uppsala University, Uppsala, Sweden.

出版信息

Chemphyschem. 2011 Sep 12;12(13):2423-8. doi: 10.1002/cphc.201100320. Epub 2011 Jul 27.

Abstract

Super- and hyperhalogens are a class of highly electronegative species whose electron affinities far exceed those of halogen atoms and are important to the chemical industry as oxidizing agents, biocatalysts, and building blocks of salts. Using the well-known Wade-Mingos rule for describing the stability of closo-boranes B(n)H(n)(2-) and state-of-the-art theoretical methods, we show that a new class of super- and hyperhalogens, guided by this rule, can be formed by tailoring the size and composition of borane derivatives. Unlike conventional superhalogens, in which a central metal atom is surrounded by halogen atoms, the superhalogens formed according to the Wade-Mingos rule do not have to have either halogen or metal atoms. We demonstrate this by using B(12)H(13) and its isoelectronic cluster CB(11)H(12) as examples. We also show that while conventional superhalogens containing alkali atoms require at least two halogen atoms, a single borane-like moiety is sufficient to give M(B(12)H(12)) clusters (M=Li, Na, K, Rb, Cs) superhalogen properties. In addition, hyperhalogens can be formed by using the above superhalogens as building blocks. Examples include M(B(12)H(13))(2) and M(CB(11)H(12))(2) (M=Li-Cs). This finding opens the door to an untapped source of superhalogens and weakly coordinating anions with potential applications.

摘要

超卤素和过卤素是一类具有极高电负性的物种,其电子亲合能远远超过卤素原子,作为氧化剂、生物催化剂和盐的构建块,在化学工业中具有重要意义。利用描述 closo-硼烷 B(n)H(n)(2-)稳定性的著名 Wade-Mingos 规则和最先进的理论方法,我们表明,通过调整硼烷衍生物的大小和组成,可以形成一类新的超卤素和过卤素。与传统的超卤素不同,传统的超卤素中中心金属原子被卤素原子包围,根据 Wade-Mingos 规则形成的超卤素不一定含有卤素或金属原子。我们以 B(12)H(13)及其等电子团簇 CB(11)H(12)为例证明了这一点。我们还表明,虽然含有碱金属原子的传统超卤素至少需要两个卤素原子,但单个硼烷样部分足以赋予 M(B(12)H(12))簇(M=Li、Na、K、Rb、Cs)超卤素性质。此外,还可以使用上述超卤素作为构建块形成过卤素。例如,M(B(12)H(13))(2)和 M(CB(11)H(12))(2)(M=Li-Cs)。这一发现为开发具有潜在应用的未开发的超卤素和弱配位阴离子资源开辟了道路。

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