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同原子多面体作为化学中的结构模块:是什么将富勒烯和同核津特耳离子结合在一起?

Homoatomic Polyhedra as Structural Modules in Chemistry: What Binds Fullerenes and Homonuclear Zintl Ions?

作者信息

Fässler Thomas F

机构信息

Institut für Anorganische Chemie Technische Universität Darmstadt Petersenstrasse 18, 64287 Darmstadt, Germany, Fax: (+49) 6151-166029.

出版信息

Angew Chem Int Ed Engl. 2001 Nov 19;40(22):4161-4165. doi: 10.1002/1521-3773(20011119)40:22<4161::AID-ANIE4161>3.0.CO;2-P.

Abstract

Ligand-free homoatomic polyhedra are fascinating, not only because of their aesthetic simplicity but also because of their physical and chemical properties. They serve as electron reservoirs, show structural changes that depend upon the electron count, and can be used as "superatomic" building blocks for the targeted assembly of complex structures. Herein, the increasingly pronounced relationship between the fullerides and the nine-atom Zintl ions, the terels, is considered, even though one class of the compounds can be described as large polyhedra with classical bonds and the other as small clusters with nonclassical bonds (Wade rules). In both classes soluble salts with isolated ions, polymer chains, and binary phases with strong interactions between the ions occur.

摘要

无配体同原子多面体引人入胜,不仅因其美学上的简洁性,还因其物理和化学性质。它们可作为电子库,呈现出取决于电子数的结构变化,并可用作复杂结构定向组装的“超原子”构建块。本文考虑了富勒化物与九原子津特耳离子(terels)之间日益显著的关系,尽管一类化合物可描述为具有经典键的大尺寸多面体,而另一类为具有非经典键的小尺寸簇(韦德规则)。在这两类化合物中,都存在带有孤立离子的可溶性盐、聚合物链以及离子间具有强相互作用的二元相。

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