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Temperature-dependent ultraviolet photoluminescence in hierarchical Zn, ZnO and ZnO/Zn nanostructures

机译:与温度有关的紫外线光致发光在分层锌、氧化锌和锌华/含铅nanostructures

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The temperature-dependent effects on the ultraviolet (UV) photoluminescence (PL) enhancement, blueshift, thermal quenching, and chromaticity of the two-dimensional (2D) Zn nanosheets, 2D-hierarchical ZnO nanostructures, and 2D-hierarchical ZnO/Zn nanostructures are presented. In this study, 2D Zn nanosheets were synthesized using a hot-plate metal vapor deposition technique, after which 2D-hierarchical ZnO nanostructures and ZnO/Zn were prepared from the 2D Zn nanosheets by a simple thermal annealing method. The enhancement and blueshift of the UV PL emissions from the three nanostructures at low temperatures arose from three distinct PL mechanisms. For the ZnO nanostructures, the UV PL emission enhancements and blueshifts at low temperature were due to the conversion of the free excitons (FXs) to neutral-donor-bound-excitons (D(0)Xs). The ZnO/Zn nanostructures possessed the highest UV PL intensities among the three nanostructures, because the free electrons from the Zn portions across the metal-semiconductor heterojunctions greatly assisted in enhancing the PL emissions. The enhancement and thermal quenching were quantitatively analyzed with simple normalization methods. The results show that all three kinds of nanostructures are excellent candidates for use in UV light emitters.
机译:随温度而变的影响紫外线(UV)光致发光(PL)增强,热淬火和蓝移色度的二维(2 d)锌nanosheets 2 d-hierarchical氧化锌纳米结构,和2 d-hierarchical氧化锌/锌纳米结构提出了。使用抗金属蒸气合成沉积技术,之后2 d-hierarchical氧化锌纳米结构氧化锌/锌和准备通过一个简单的2 d锌nanosheets热退火方法。紫外线的PL排放三个纳米结构在低温下出现三个不同的PL机制。纳米结构,紫外PL发射增强并在低温是由于蓝移转换自由激子(FXs)neutral-donor-bound-excitons (D (0) x)。纳米结构具有最高的紫外线PL三种纳米结构强度,因为锌的自由电子部分在金属半导体接触垂直在很大程度上帮助提高PL排放。增强和热淬火定量分析了简单的正常化方法。纳米结构是使用的优秀候选人在紫外线发射器。

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