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以氧化锌为模板合成纤锌矿型硫化锌和硒化锌纳米颗粒。

ZnO-templated synthesis of wurtzite-type ZnS and ZnSe nanoparticles.

作者信息

Dawood Farah, Schaak Raymond E

机构信息

Department of Chemistry and Materials Research Institute, The Pennsylvania State University, University Park, Pennsylvania 16802, USA.

出版信息

J Am Chem Soc. 2009 Jan 21;131(2):424-5. doi: 10.1021/ja808455u.

Abstract

The controllable synthesis of semiconductor nanocrystals is important for exploiting their size-dependent properties in a variety of applications. The important wide-bandgap semiconductors ZnS and ZnSe crystallize in both the zincblende (ZB) and wurtzite (WZ) structures. While the ZB polymorphs are most stable, methods exist for synthesizing the WZ-type nanocrystals. However, because of the subtle structural differences between the ZB and WZ structures, subtle synthetic differences can favor one polymorph over the other. It is therefore challenging to predictably generate the WZ polymorphs and understand the factors that play a key role in their formation. Through careful mechanistic studies, we show that ZnO nanoparticles, which adopt the WZ structure, form as intermediates in typical reactions that generate WZ-ZnS. This implies that ZnO nanoparticles can serve as structural templates for the preferential formation of WZ-ZnS nanoparticles, and this is confirmed experimentally. Similar chemistry can be used to preferentially form WZ-ZnSe and ZB-ZnSe.

摘要

半导体纳米晶体的可控合成对于在各种应用中利用其尺寸依赖性特性至关重要。重要的宽带隙半导体硫化锌(ZnS)和硒化锌(ZnSe)以闪锌矿(ZB)和纤锌矿(WZ)结构结晶。虽然ZB多晶型物最稳定,但存在合成WZ型纳米晶体的方法。然而,由于ZB和WZ结构之间存在细微的结构差异,细微的合成差异可能会使一种多晶型物优于另一种。因此,可预测地生成WZ多晶型物并理解在其形成中起关键作用的因素具有挑战性。通过仔细的机理研究,我们表明采用WZ结构的氧化锌(ZnO)纳米颗粒在生成WZ-ZnS的典型反应中作为中间体形成。这意味着ZnO纳米颗粒可以作为优先形成WZ-ZnS纳米颗粒的结构模板,这一点已通过实验得到证实。类似的化学方法可用于优先形成WZ-ZnSe和ZB-ZnSe。

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