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Ambient temperature-independent dual-band mid-infrared radiation thermometry
Lu, Y.; X. He; Z. H. Wei; Z. Y. Sun and S. T. Chang
2016
发表期刊Applied Optics
卷号55期号:9
摘要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.
文章类型期刊
收录类别SCI ; EI
语种英语
文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/57117
专题中科院长春光机所知识产出
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GB/T 7714
Lu, Y.,X. He,Z. H. Wei,et al. Ambient temperature-independent dual-band mid-infrared radiation thermometry[J]. Applied Optics,2016,55(9).
APA Lu, Y.,X. He,Z. H. Wei,&Z. Y. Sun and S. T. Chang.(2016).Ambient temperature-independent dual-band mid-infrared radiation thermometry.Applied Optics,55(9).
MLA Lu, Y.,et al."Ambient temperature-independent dual-band mid-infrared radiation thermometry".Applied Optics 55.9(2016).
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