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Experimental observation of spatially resolved photo-luminescence intensity distribution in dual mode upconverting nanorod bundles

机译:双模上转换纳米棒束中空间分辨光致发光强度分布的实验观察

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摘要

A novel method for demonstration of photoluminescence intensity distribution in upconverting nanorod bundles using confocal microscopy is reported. Herein, a strategy for the synthesis of highly luminescent dual mode upconverting/downshift Y1.94O3:Ho3+0.02/Yb3+0.04 nanorod bundles by a facile hydrothermal route has been introduced. These luminescent nanorod bundles exhibit strong green emission at 549 nm upon excitations at 449 nm and 980 nm with quantum efficiencies of ~6.3% and ~1.1%, respectively. The TEM/HRTEM results confirm that these bundles are composed of several individual nanorods with diameter of ~100 nm and length in the range of 1–3 μm. Furthermore, two dimensional spatially resolved photoluminescence intensity distribution study has been carried out using confocal photoluminescence microscope throughout the nanorod bundles. This study provides a new direction for the potential use of such emerging dual mode nanorod bundles as photon sources for next generation flat panel optical display devices, bio-medical applications, luminescent security ink and enhanced energy harvesting in photovoltaic applications.
机译:报道了使用共聚焦显微镜证明上转换纳米棒束中光致发光强度分布的新方法。在此,通过简便的水热途径合成高发光双模上转换/下移Y1.94O3:Ho 3 + 0.02 / Yb 3 + 0.04纳米棒束的策略有被介绍。这些发光的纳米棒束在449 nm和980 nm处激发时,在549 nm处显示强绿色发射,量子效率分别为〜6.3%和〜1.1%。 TEM / HRTEM结果证实,这些束由几根直径约100 nm,长度在1-3μm的纳米棒组成。此外,已经使用共聚焦光致发光显微镜对整个纳米棒束进行了二维空间分辨的光致发光强度分布研究。这项研究为这种新兴的双模纳米棒束作为下一代平板光学显示设备的光子源,生物医学应用,发光安全油墨和增强光伏应用中的能量收集提供了可能的新方向。

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