Feng Pingyun, Bu Xianhui, Zheng Nanfeng
Department of Chemistry, University of California, Riverside, California 92521, USA.
Acc Chem Res. 2005 Apr;38(4):293-303. doi: 10.1021/ar0401754.
One of the most exciting recent developments concerning molecular architectures is the emerging field of crystalline chalcogenide superlattices that bridges two traditional but distinct areas of research: chalcogenide clusters and porous materials. By combining synthetic and structural concepts in these two areas, many crystalline solids containing spatially organized chalcogenide clusters have been created that exhibit varied properties ranging from microporosity, fast ion conductivity, and photoluminescence to narrow and tunable electronic band gaps. The potential applications of these materials extend beyond traditional areas such as acid catalysis or adsorption-based separation to include shape- or size-selective photocatalysis, solid-state ionics, and electrochemistry.
关于分子结构,最近最令人兴奋的进展之一是晶体硫族化物超晶格这一新兴领域,它架起了两个传统但不同的研究领域之间的桥梁:硫族化物簇和多孔材料。通过结合这两个领域的合成和结构概念,已经创造出许多含有空间有序硫族化物簇的晶体固体,这些固体表现出从微孔性、快速离子传导性、光致发光到窄且可调谐的电子带隙等各种性质。这些材料的潜在应用不仅限于传统领域,如酸催化或基于吸附的分离,还包括形状或尺寸选择性光催化、固态离子学和电化学。