Department of Chemistry, Heriot-Watt University, Edinburgh, EH14 4AS, UK.
Dalton Trans. 2010 Jul 14;39(26):5965-72. doi: 10.1039/c000130a. Epub 2010 Apr 15.
Tetrahedral chalcogenide clusters, with their well-defined molecular structures and interesting properties, are attractive building blocks for hybrid materials, in which porosity may be integrated with electronic or optical properties. Linkage of tetrahedral clusters often occurs through bridging chalcogenolate ligands, and results in extended structures of inorganic connectivity. However, linkage of tetrahedral clusters via organic ligands is also possible and a number of coordination polymers have already been reported. Recent advances on the synthesis and crystal structures of extended hybrid structures based on tetrahedral clusters are described here.
四面体硫属元素簇具有明确的分子结构和有趣的性质,是用于杂化材料的有吸引力的构建块,其中可以将孔隙率与电子或光学性质集成在一起。四面体簇的连接通常通过桥接硫属代酸根配体发生,从而导致无机连接的扩展结构。但是,通过有机配体连接四面体簇也是可能的,并且已经报道了许多配位聚合物。此处描述了基于四面体簇的扩展杂化结构的合成和晶体结构的最新进展。