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硫化镓团簇的非水相合成及其选择性结晶为三维光致发光超晶格。

Nonaqueous synthesis and selective crystallization of gallium sulfide clusters into three-dimensional photoluminescent superlattices.

作者信息

Zheng Nanfeng, Bu Xianhui, Feng Pingyun

机构信息

Department of Chemistry, University of California, Riverside, California 92521, USA.

出版信息

J Am Chem Soc. 2003 Feb 5;125(5):1138-9. doi: 10.1021/ja021274k.

Abstract

A low-temperature, nonaqueous synthesis approach is described that produces a series of gallium sulfide and polysulfide three-dimensional superlattices from binary Ga-S and ternary Zn-Ga-S supertetrahedral clusters. The diversity of superlattices is achieved by modifying the cluster size, the cluster composition, and the inter-cluster linkage mode. Both pure T3 (Ga10S186-) (denoted as UCR-7GaS) and pure T4 (Zn4Ga16S3310-) (denoted as UCR-5ZnGaS) superlattices with ring sizes of 18 and 24 tetrahedral atoms have been made. Of particular interest is the synthesis of the T3-T4 hybrid superlattice (denoted as UCR-19) with an odd ring size of 21 tetrahedral atoms. Another unprecedented feature is the occurrence of the -S-S-S- polysulfide linkage between supertetrahedral clusters in UCR-18. The fluorescent emission wavelength of these materials ranges from 440 to 500 nm and fills the previously observed gap between open-framework oxides and indium sulfides. A comparative study shows that open-framework gallium sulfides are more thermally stable than indium sulfides. They can also undergo ion exchange. It is suggested here that supertetrahedral clusters of different types coexist in a solution and can be selectively crystallized out with a proper choice of structure-directing agents.

摘要

描述了一种低温非水合成方法,该方法从二元Ga-S和三元Zn-Ga-S超四面体簇制备出一系列硫化镓和多硫化物三维超晶格。通过改变簇尺寸、簇组成和簇间连接模式实现了超晶格的多样性。已制备出具有18和24个四面体原子环尺寸的纯T3(Ga10S186-)(记为UCR-7GaS)和纯T4(Zn4Ga16S3310-)(记为UCR-5ZnGaS)超晶格。特别令人感兴趣的是合成具有21个四面体原子奇数环尺寸的T3-T4混合超晶格(记为UCR-19)。另一个前所未有的特征是在UCR-18中超四面体簇之间出现了-S-S-S-多硫化物键。这些材料的荧光发射波长范围为440至500nm,填补了先前观察到的开放框架氧化物和硫化铟之间的空白。一项比较研究表明,开放框架硫化镓比硫化铟具有更高的热稳定性。它们还可以进行离子交换。这里提出,不同类型的超四面体簇在溶液中共存,并且可以通过适当选择结构导向剂选择性地结晶出来。

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