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Upconversion, Size Analysis Fiber Filling of NaYF_4: Ho~(3+),Yb~(3+) Crystals Nanocolloids

机译:NaYF_4的上转换,尺寸分析和纤维填充:Ho〜(3 +),Yb〜(3+)晶体和纳米胶体

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摘要

Nano-colloids and nano-crystals doped with ions of rare-earth elements have recently attracted a lot of attention in the scientific community. This attention is due to unique physical, chemical and optical properties attributed to nanometer size of the particles. They have great potential of being used in applications spanning from new types of lasers, especially blue and UV ones, phosphorous display monitors, optical communications, and fluorescence imaging. In this paper we investigate the near-infrared upconversion luminescence in bulk crystals and nanocolloid filled photonic crystal fiber with ytterbium and holmium co-doped NaYF_4 phosphor. The phosphor is prepared by using simple co-precipitation synthetic method. The initially prepared phosphor has very week upconversion fluorescence. The fluorescence significantly increased after the phosphor was annealed at a temperature of 600 ℃. Nanocolloids of this phosphor were obtained using 1 -propanol as solvent and they were utilized as laser filling medium in photonic crystal fibers. Under 980 run diode laser excitation very strong upconversion signals were obtained for ytterbium and holmium co-doped phosphor at 541 nm, 646 nm and 751 nm. Pump power emissions, laser ablation and size analysis of the particles was conducted to understand the upconversion mechanisms. The particle sizes of the nanocolloids were analyzed using Atomic Force Microscope and Malvern Zetasizer instrument. The reported nanocolloids are good candidates for fluorescent biosensing applications and also as a new laser filling medium in fiber laser.
机译:掺有稀土元素离子的纳米胶体和纳米晶体近来引起了科学界的广泛关注。该关注归因于归因于颗粒的纳米尺寸的独特的物理,化学和光学性质。它们具有巨大的潜力,可用于各种类型的激光器,特别是蓝色和紫外激光器,磷显示监视器,光通信和荧光成像。在本文中,我们研究了bulk和m共掺杂的NaYF_4荧光粉在块状晶体和纳米胶体填充的光子晶体光纤中的近红外上转换发光。通过使用简单的共沉淀合成方法制备磷光体。最初准备的荧光粉具有非常一周的上转换荧光。荧光粉在600℃退火后,荧光显着增强。使用1-丙醇作为溶剂获得该荧光体的纳米胶体,并将其用作光子晶体光纤中的激光填充介质。在980nm二极管激光激发下,excitation和and共掺杂的磷光体在541nm,646nm和751nm处获得非常强的上转换信号。进行了泵浦功率发射,激光烧蚀和颗粒尺寸分析,以了解上转换机理。使用原子力显微镜和Malvern Zetasizer仪器分析纳米胶体的粒径。报道的纳米胶体是荧光生物传感应用的良好候选者,也是光纤激光器中的新型激光填充介质。

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  • 来源
    《Optical components and materials XI》|2014年|898221.1-898221.6|共6页
  • 会议地点 San Francisco CA(US)
  • 作者单位

    Oakwood University, Department of Mathematics Computer Science, 7000 Adventist Blvd. Huntsville, AL 35896;

    Oakwood University, Department of Mathematics Computer Science, 7000 Adventist Blvd. Huntsville, AL 35896;

    Oakwood University, Department of Mathematics Computer Science, 7000 Adventist Blvd. Huntsville, AL 35896;

    Oakwood University, Department of Mathematics Computer Science, 7000 Adventist Blvd. Huntsville, AL 35896;

    Oakwood University, Department of Mathematics Computer Science, 7000 Adventist Blvd. Huntsville, AL 35896;

    Oakwood University, Department of Mathematics Computer Science, 7000 Adventist Blvd. Huntsville, AL 35896;

    SSS Optical Technologies, LLC 515 Sparkman Drive, Suite 122, Huntsville, AL 35816;

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  • 正文语种 eng
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