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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Facile route to Zn-based II-VI semiconductor spheres, hollow spheres, and core/shell nanocrystals and their optical properties
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Facile route to Zn-based II-VI semiconductor spheres, hollow spheres, and core/shell nanocrystals and their optical properties

机译:锌基II-VI半导体球,空心球和核/壳纳米晶体的便捷路线及其光学性质

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摘要

A convenient chemical conversion method that allows the direct preparation of nanocrystalline ZnE (E = 0, S, Se) semiconductor spheres and hollow spheres as well as their core/shell structures is reported. By using monodisperse ZnO nanospheres as a starting reactant and in situ template, ZnS, ZnSe solid and hollow nanospheres, and ZnC/ZnS and ZnO/ZnSe core/shell nanostructures have been obtained through an ultrasound-assisted solution-phase conversion process. The formation mechanism of these nanocrystals is connected with the sonochernical effect of ultrasound irradiation. The photoluminescence and electrogenerated chemiluminescence properties of the as-prepared nanocrystals were investigated.
机译:报道了一种方便的化学转化方法,该方法可以直接制备纳米晶ZnE(E = 0,S,Se)半导体球和空心球及其核/壳结构。通过使用单分散的ZnO纳米球作为起始反应物和原位模板,通过超声辅助溶液相转化工艺获得了ZnS,ZnSe固体和空心纳米球以及ZnC / ZnS和ZnO / ZnSe核/壳纳米结构。这些纳米晶体的形成机理与超声辐射的超声效应有关。研究了所制备纳米晶体的光致发光和电致化学发光性质。

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