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第 14 族和第 15 族元素的 Zintl 离子、笼状化合物和类金属间簇合物。

Zintl ions, cage compounds, and intermetalloid clusters of Group 14 and Group 15 elements.

机构信息

Department of Chemistry, Technische Universität München, Lichtenbergstrasse 4, 85747 Garching/München, Germany.

出版信息

Angew Chem Int Ed Engl. 2011 Apr 11;50(16):3630-70. doi: 10.1002/anie.201001630. Epub 2011 Mar 31.

Abstract

For a long time, Zintl ions of Group 14 and 15 elements were considered to be remarkable species domiciled in solid-state chemistry that have unexpected stoichiometries and fascinating structures, but were of limited relevance. The revival of Zintl ions was heralded by the observation that these species, preformed in solid-state Zintl phases, can be extracted from the lattice of the solids and dissolved in appropriate solvents, and thus become available as reactants and building blocks in solution chemistry. The recent upsurge of research activity in this fast-growing field has now provided a rich plethora of new compounds, for example by substitution of these Zintl ions with organic groups and organometallic fragments, by oxidative coupling reactions leading to dimers, oligomers, or polymers, or by the inclusion of metal atoms under formation of endohedral cluster species and intermetalloid compounds; some of these species have good prospects in applications in materials science. This Review presents the enormous progress that has been made in Zintl ion chemistry with an emphasis on syntheses, properties, structures, and theoretical treatments.

摘要

长期以来,第 14 族和第 15 族元素的 Zintl 离子被认为是固态化学中具有意想不到的化学计量和迷人结构的显著物种,但相关性有限。Zintl 离子的复兴预示着这些物种可以从固态 Zintl 相中预先形成,并从固体晶格中提取出来并溶解在适当的溶剂中,从而作为反应物和在溶液化学中的构建块可用。在这个快速发展的领域中,最近研究活动的激增,现在已经提供了丰富的新型化合物,例如通过用有机基团和有机金属片段取代这些 Zintl 离子,通过氧化偶联反应导致二聚体、低聚物或聚合物,或通过形成内笼物种和金属间化合物的金属原子的包含;这些物种中的一些在材料科学中的应用前景良好。本综述重点介绍了 Zintl 离子化学方面取得的巨大进展,包括合成、性质、结构和理论处理。

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