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Synthesis of copper sulphide-based hybrid nanostructures and their application in shape control of colloidal semiconductor nanocrystals

机译:硫化铜基杂化纳米结构的合成及其在胶体半导体纳米晶体形状控制中的应用

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摘要

Copper sulphide is a material with low toxicity and high application potential. Colloidal synthesis allows its incorporation into hybrid nanostructures, which not only combine the properties of different materials within one nanocrystal, but also exhibit new features due to the interaction of the building blocks connected on the nanometer scale. Starting with copper sulphide seeds, such hybrid nanocrystals composed of copper sulphide and semiconductors like CulnS(2), CuInxGa1- S-x(2), Cu2ZnSnS4, ZnS, CdS, and PbS have been synthesized. In some of these reactions the main focus lies on the formation of new hybrid nanocrystals; in others copper sulphide plays the role of a catalyst, and copper sulphide containing hybrid nanoparticles are only intermediates in the synthesis and shape control of other semiconductor materials. Both possibilities and the underlying growth mechanisms are discussed in this article.
机译:硫化铜是一种低毒,高应用潜力的材料。胶体合成使其可以掺入杂化的纳米结构中,该结构不仅在一个纳米晶体中结合了不同材料的特性,而且由于在纳米级上连接的结构单元的相互作用而展现出新的特征。从硫化铜种子开始,已经合成了由硫化铜和半导体如CulnS(2),CuInxGa1-S-x(2),Cu2ZnSnS4,ZnS,CdS和PbS组成的杂化纳米晶体。在其中一些反应中,主要重点在于形成新的杂化纳米晶体。在其他情况下,硫化铜起着催化剂的作用,而含有硫化铜的杂化纳米粒子只是其他半导体材料的合成和形状控制中的中间体。本文讨论了可能性和潜在的增长机制。

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