首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Spectroscopic Imaging and Power Dependence of Near-Infrared to Visible Upconversion Luminescence from NaYF4:Yb~(3+),Er~(3+) Nanoparticles on Nanocavity Arrays
【24h】

Spectroscopic Imaging and Power Dependence of Near-Infrared to Visible Upconversion Luminescence from NaYF4:Yb~(3+),Er~(3+) Nanoparticles on Nanocavity Arrays

机译:光谱成像和近红外的功率依赖于Nayf4:Yb〜(3 +),ER〜(3+)纳米颗粒上的纳米菌阵列的近红外升高发光

获取原文
获取原文并翻译 | 示例
获取外文期刊封面目录资料

摘要

The spatial variations in upconversion luminescence from NaYF4:Er~(3+),Yb~(3+) nanoparticles embedded in PMMA on Au nanocavity arrays are investigated over a wide range of excitation powers, spanning the nonlinear and saturation power-dependence regimes. Spatially resolved upconversion spectra on these arrays show a minimum of ≈3× luminescence enhancement compared to the adjacent smooth Au surface under high-intensity excitation, with progressively higher enhancement ratios, up to 30×, at excitation intensities below 100 W/cm~2. It is found that the average upconversion luminescence enhancement, obtained by spectroscopic imaging and far-field measurements, can be almost entirely accounted for by an effective multiplicative shift in the excitation intensity, P_(eff) = F-P, which is robust over S orders of magnitude variation in excitation intensity. We reconcile this constant excitation enhancement factor, F = 4.46, with the wide range of observed luminescence enhancement factors, ranging from 3× to 30×, using an analytical model for a three level system, and by numerically solving a system of coupled rate equations for the Yb~(3+), Er~(3+) system. By analyzing the statistical distributions of luminescence intensities in the spectroscopic images on and off the nanocavity arrays, estimates of the luminescence enhancement factor independent of fluctuations in nanoparticle density are obtained. The results clearly relate observed enhancement factors to the kinetics of the energy-transfer upconversion process, suggesting the primary upconversion enhancement from these substrates is in the Yb~(3+) absorption channel, and demonstrate these self-assembled enhancing substrates as a low-cost and scalable route toward efficient near-infrared to visible upconversion at low excitation intensities.
机译:在从相NaYF 4上转换发光的空间变化:铒〜(3 +),镱〜(3+)纳米颗粒包埋在聚甲基丙烯酸甲酯在Au纳米腔阵列研究在宽范围的激发功率,跨越所述非线性和饱和功率依赖性机制。空间分辨上转换光谱上这些阵列显示最低的≈3×发光增强相比在高强度的激发相邻的平滑表面的Au,与逐渐变高的增强比值,可达30×,在低于100瓦/厘米〜2激发强度。据发现,平均上转换发光增强,通过光谱成像和远场测量中获得,可以几乎完全由在激发强度的有效乘法移位占,P_(EFF)= FP,其超过的订单是稳健在激发强度大小的变化。我们调和这个恒定激励增强因子,F = 4.46,具有宽范围的观察到的发光增强因子,取值范围为3×30×,使用分析模型用于三个电平系统,并通过数值求解耦合速率方程系统对于掺Yb〜(3+),尔〜(3+)系统。通过分析和关闭纳腔阵列发光强度在分光图像的统计分布,估计发光增强因子独立的纳米颗粒密度波动的被获得。结果清楚地观察到的涉及增强因子到能量传递上转换过程的动力学,暗示从这些基板的主要上转换增强是在掺Yb〜(3+)吸收通道,并且证明这些自组装增强衬底作为低成本和可升级的朝向路线高效近红外在低激发强度到可见转换。

著录项

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