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Green photoluminescence mechanism in ZnS nanostructures

机译:ZnS纳米结构中的绿色光致发光机理

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摘要

ZnS Nanostructures, including nanoparticles and nanospheres, were synthesized through solvothermal process. The size and crystallinity of the ZnS nanostructures were easily controlled by the precursor source and the solvents. The photoluminescence (PL) in the range of 400-650 nm has been observed and the broad band is peaked at about 525 nm. The PL intensity reduced greatly with increasing the nanoparticle size of the as-prepared samples and the ratio of zinc and sulfur sources in the preparation process. Spectral examinations and analyses reveal that the 525 nm emission peak indeed originates from the electronic states determined by the zinc vacancies.
机译:ZnS纳米结构,包括纳米粒子和纳米球,是通过溶剂热法合成的。 ZnS纳米结构的尺寸和结晶度易于通过前体来源和溶剂进行控制。已经观察到在400-650nm范围内的光致发光(PL),并且宽带在约525nm处达到峰值。随着制备样品的纳米粒径的增加以及制备过程中锌和硫源的比例的增加,PL强度大大降低。光谱检查和分析表明,525 nm的发射峰确实源自锌空位所确定的电子态。

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