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首页> 外文期刊>RSC Advances >Excitation dependent visible and NIR photoluminescence properties of Er3+, Yb3+ co-doped NaBi(MoO4)(2) nanomaterials
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Excitation dependent visible and NIR photoluminescence properties of Er3+, Yb3+ co-doped NaBi(MoO4)(2) nanomaterials

机译:ER3 +,YB3 +共掺杂Nabi(MOO4)(2)纳米材料的激发依赖性可见和NIR光致发光性能

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摘要

Due to the exceptional luminescence properties of lanthanide doped nanomaterials, they have applications in various field such as sensing, photocatalysis, solar cells, bio-imaging, therapy, diagnostics, anti-counterfeiting, latent fingerprint development, optical amplifiers, solid state lighting, etc. Here, we report the excitation dependent photoluminescence properties of Yb3+, Er3+ co-doped NaBi(MoO4)(2) nanomaterials in both the visible and NIR regions upon UV, visible and NIR excitation. These photoluminescence properties show that strong energy transfer occurs from the host to the Yb3+, Er3+ ions. These materials show major emission bands at 530, 552 (green) and 656 nm (red) in the visible region and 1000 and 1534 nm in the NIR region. The intensity ratio between green and red bands is dependent on the excitation wavelength, whereas the intensity ratio of the 1000 and 1534 nm bands relies on the excitation wavelength and Er3+ doping concentration. These materials also exhibit host emission and upconversion luminescence properties in the visible region.
机译:由于镧系元素掺杂纳米材料的出色发光性质,它们具有在各种领域的应用,如传感,光催化,太阳能电池,生物成像,治疗,诊断,防伪,潜在指纹开发,光放大器,固态照明等。在这里,我们在UV,可见和NIR激发时报告在可见和NIR区域中YB3 +,ER3 +,ER3 +共掺杂NABI(MOO4)(2)纳米材料的激发依赖性光致发光性质。这些光致发光性质表明,强能量转移从宿主到YB3 +,ER3 +离子发生。这些材料显示在可见区域中的530,552(绿色)和656nm(红色)的主要发射带在NIR区域中的1000和1534nm。绿色和红色频带之间的强度比取决于激发波长,而1000和1534nm条带的强度比依赖于激发波长和ER3 +掺杂浓度。这些材料还在可见区域中表现出宿主发射和上变发光性质。

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  • 来源
    《RSC Advances》 |2020年第25期|共6页
  • 作者单位

    INST Phase 10 Sect 64 Mohali 160062 Punjab India;

    INST Phase 10 Sect 64 Mohali 160062 Punjab India;

    INST Phase 10 Sect 64 Mohali 160062 Punjab India;

    INST Phase 10 Sect 64 Mohali 160062 Punjab India;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 化学;
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