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Luminescence properties of nano and bulk ZnWO4 and their charge transfer transitions

机译:纳米和本体ZnWO4的发光特性及其电荷转移跃迁

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We here investigated the photoluminescence properties of nano and bulk ZnWO4 phosphors with the aim to understand the observed altered properties of nanoparticles as compared to their bulk counterparts. Their excitation bands were decomposed into three components by Gaussian fitting. The influence of crystalline defects that are present due to the low synthesis temperature of ZnWO4 nanoparticles on the excitation spectra was studied. The structures of ZnWO4 samples were refined with the General Structure Analysis System. Making use of the estimated refractive indices and the refined lattice parameters, four chemical bond parameters of W-O bonds were calculated and integrated to give the environmental factor h_e, which can to some extent explain the broadened excitation band in bulk ZnWO4. A new factor H of every W-O bond was calculated, and based on the results, three components of the excitation band at about 250, 280 and 300 nm were assigned to be from W-O1, W-O2(2) and W-02(l) charge transfer transitions, respectively.
机译:我们在此研究了纳米和主体ZnWO4荧光粉的光致发光特性,目的是了解与它们的整体对应物相比,观察到的纳米粒子改变后的特性。通过高斯拟合将其激发带分解为三个分量。研究了由于ZnWO4纳米粒子的低合成温度而导​​致的晶体缺陷对激发光谱的影响。 ZnWO4样品的结构通过通用结构分析系统进行了改进。利用估计的折射率和精细的晶格参数,计算并积分了W-O键的四个化学键参数,得到环境因子h_e,这可以在一定程度上解释整体ZnWO4的激发能带。计算每个WO键的新因子H,并根据结果将激发带在大约250、280和300 nm处的三个分量分配为W-O1,W-O2(2)和W-02 (l)分别进行电荷转移。

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