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Correlation Between Optoelectronic and Positron Lifetime Properties in As-received and Plasma-treated ZnO Nanopowders

机译:接收和等离子体处理ZnO纳米粉末的光电子与正电子寿命性能的相关性

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We employed photoluminescence and positron lifetime measurements on a number of commerciallyavailable ZnO nanopowders. The experiments were performed before and after processing of these samples in remote Nand 0/He plasma. In all the nanopowders, the average lifetime component is substantially longer than in a single-crystalline sample, consistent with the model of grains with defect-rich surface and subsurface layers. However, thesample-to-sample differences in the quality of the powders, as detected by the photoluminescence spectroscopy, obscureobservation of possible size effects. Compression of the powders into pellets yields reductions of the average positronlifetimes. Plasma-induced modifications are most visible in the low-temperature photoluminescence spectra of thesmallest nanocrystals, indicative of a surface-specific nature of the chosen treatment procedure.
机译:我们在许多商学院公共利用ZnO纳米粉末中使用光致发光和正电子寿命测量。在远程NAND 0 / H血浆中处理这些样品之前和之后进行实验。在所有纳米粉末中,平均寿命组分基本上比单晶样品中的长度长,与具有缺陷的表面和地下层的颗粒模型一致。然而,如光致发光光谱检测到的,粉末质量差异,胶合致发光光谱法,可能的尺寸效应。将粉末压缩成颗粒产生平均正数量的降低。等离子体诱导的修饰在最纳米晶体的低温光致发光光谱中最可见,指示所选择的处理程序的表面特异性。

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