首页> 外文学位 >Luminescence spectroscopy of erbium(3+) doped inorganic nanocrystals: An investigation into their upconversion properties.
【24h】

Luminescence spectroscopy of erbium(3+) doped inorganic nanocrystals: An investigation into their upconversion properties.

机译:掺((3+)无机纳米晶体的发光光谱:对其上转换特性的研究。

获取原文
获取原文并翻译 | 示例

摘要

This thesis presents a detailed investigation into the spectroscopic properties of inorganic nanocrystals doped with trivalent rare earth ions. We focus on their upconversion luminescence, emission of radiation at higher energy than the pump wavelength, and evaluate the fundamental mechanisms of upconversion in the nanocrystal.; We evaluate the spectroscopic properties of sesquioxide nanocrystals doped with trivalent erbium (M2O3:Er3+, where M = Y, Lu, or Sc) prepared by the propellant synthesis technique. Characteristic green, red, and near-infrared Er3+ emission is observed following excitation with 488 nm in all samples under investigation. The overall luminescence intensity of the sesquioxide nanocrystals is lower compared to the microcrystalline material (bulk) as a result of the presence of high vibrational energies, 1500 and 3350 cm-1, due to adsorbed CO32- and OH- anions, respectively, which significantly increase the rate of multiphonon relaxation. The garnet (Gd3Ga5O12:Er 3+) nanocrystals, however, have considerably less surface adsorbed species, which consequently increases the luminescence intensity drastically.; The upconversion of red (lambdaexc = 650 nm) and near-infrared (lambdaexc = 800 or 980 nm) radiation into UV, blue, green, and red emission is studied for Er3+ ions doped in various sesquioxide (Y2O3, Lu2O3, and SC2O 3) and garnet (Gd3Ga5O12) nanocrystals over a wide range of temperatures and dopant concentration is investigated. We present, for the first time, upconversion in a trivalent rare earth (RE 3+) doped nanocrystalline material, specifically Y2O 3:Er3+. We show that replacing the Y3+ cation has significant consequences on the upconversion. The upconverted luminescence of Lu2O3:Er3+ nanocrystals have intensities that are 100x greater compared to identically doped nanocrystalline Y 2O3:Er3+. Furthermore, Sc2O 3:Er3+ nanocrystals show an enhanced red emission, which is greater than Y2O3:Er3+ nanocrystals (with identical Er3+ concentration) due to the smaller unit cell resulting in increased interaction between Er3+ ions. The upconversion is observed to be dependent on the method of preparation. We explore nanocrystalline Y2O3:Er3+ prepared via the propellant synthesis technique and a controlled hydrolysis synthesis (or wet chemical synthesis) where we observed quite diverse upconversion behavior attributed to the vastly different morphological properties of the two different nanocrystalline materials. Additionally, we investigate the effect of Yb3+ co-doping on the upconversion luminescence of Y2O3:Er3+ nanocrystals prepared via the two distinct synthesis routes, and observe a significant change in the mechanisms of upconversion. In the sesquioxides, the upconversion properties of the nanocrystalline material are diverse from the bulk counterpart.; Finally, we attempt to ascertain if any spectroscopic changes occur in nanosized Lu2O3:Nd3+, Y2O 3:Sm3+ and Y2O3:Dy3+ prepared via combustion synthesis. In all cases, the size of the particles affects the luminescence behavior.
机译:本文对掺有三价稀土离子的无机纳米晶体的光谱性质进行了详细的研究。我们专注于它们的上转换发光,以比泵浦波长更高的能量发射辐射,并评估纳米晶体中上转换的基本机理。我们评估了通过推进剂合成技术制备的掺有三价(M2O3:Er3 +,其中M = Y,Lu或Sc)的倍半氧化物纳米晶体的光谱性质。在所研究的所有样品中,以488 nm激发后,观察到特征性的绿色,红色和近红外Er3 +发射。由于分别吸收了CO32-和OH-阴离子,分别存在1500和3350 cm-1的高振动能,所以倍半氧化物纳米晶体的总发光强度比微晶材料(本体)要低。增加多声子弛豫速率。石榴石(Gd3Ga5O12:Er 3+)纳米晶体的表面吸附种类少得多,因此,其发光强度大大提高。对于掺杂在不同倍半氧化物中的Er3 +离子(Y2O3,Lu2O3和SC2O 3),研究了红色(lambdaexc = 650 nm)和近红外(lambdaexc = 800或980 nm)辐射向上转换为UV,蓝,绿和红色发射的过程。 )和石榴石(Gd3Ga5O12)纳米晶体在很宽的温度和掺杂浓度范围内进行了研究。我们首次提出了在三价稀土(RE 3+)掺杂的纳米晶体材料,特别是Y2O 3:Er3 +中的上转换。我们表明,取代Y3 +阳离子对上转换具有重大影响。与相同掺杂的纳米晶体Y 2O3:Er3 +相比,Lu2O3:Er3 +纳米晶体的上转换发光强度高100倍。此外,由于较小的晶胞导致Er3 +离子之间的相互作用增加,Sc2O 3:Er3 +纳米晶体显示出增强的红色发射,大于Y2O3:Er3 +纳米晶体(具有相同的Er3 +浓度)。观察到上转换取决于制备方法。我们探索了通过推进剂合成技术和受控水解合成(或湿法化学合成)制备的纳米晶Y2O3:Er3 +,在其中我们观察到由于两种不同纳米晶材料的形态特性差异极大的上转换行为。此外,我们调查了Yb3 +共掺杂对通过两种不同的合成途径制备的Y2O3:Er3 +纳米晶体的上转换发光的影响,并观察到上转换机理的重大变化。在倍半氧化物中,纳米晶体材料的上转换性质不同于本体的相应性质。最后,我们尝试确定通过燃烧合成制备的纳米级Lu2O3:Nd3 +,Y2O 3:Sm3 +和Y2O3:Dy3 +是否发生任何光谱变化。在所有情况下,颗粒的尺寸都会影响发光性能。

著录项

  • 作者

    Vetrone, Fiorenzo.;

  • 作者单位

    Concordia University (Canada).;

  • 授予单位 Concordia University (Canada).;
  • 学科 Chemistry Inorganic.
  • 学位 Ph.D.
  • 年度 2005
  • 页码 310 p.
  • 总页数 310
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 无机化学;
  • 关键词

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号