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Laser Spectroscopy of GdPO4 center dot nH(2)O:Eu Nanomaterials

机译:GdPO4中心点nH(2)O:Eu纳米材料的激光光谱

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One-dimensional GdPO4 center dot nH2O:Eu nanowires and nanorods of different sizes and the same structure were synthesized by hydrothermal method. Nanowire and nanorods had width and length of about 10 nm/50 nm and 80 nm/1 mu m, respectively. Adjusting reaction system PH value by adding alkali metal NaOH, the size and shape of the product can be tuned. The high resolution spectra, excitation spectra, and laser selective excitation spectra at low temperature were determined. Nanorod compared with nanowire, photoluminescence was enhanced, and the excitation spectrum and laser selective excitation spectra were broadened. These results suggest that Eu3+ in GdPO4 center dot nH(2)O nanorod and nanowire were located in different local environments.
机译:通过水热法合成了尺寸和结构相同的一维GdPO4中心点nH2O:Eu纳米线和纳米棒。纳米线和纳米棒的宽度和长度分别为约10nm / 50nm和80nm /1μm。加入碱金属氢氧化钠调节反应体系的PH值,​​可以调节产物的大小和形状。确定了低温下的高分辨率光谱,激发光谱和激光选择性激发光谱。纳米棒与纳米线相比,增强了光致发光,并拓宽了激发光谱和激光选择性激发光谱。这些结果表明,GdPO4中心点nH(2)O纳米棒和纳米线中的Eu3 +位于不同的局部环境中。

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