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首页> 外文期刊>Journal of Materials Chemistry, C. materials for optical and electronic devices >Numerical and experimental investigation of NIR-to-visible energy up-conversion in Er~(3+)-doped sol-gel SiO2 powders
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Numerical and experimental investigation of NIR-to-visible energy up-conversion in Er~(3+)-doped sol-gel SiO2 powders

机译:掺Er〜(3+)的溶胶-凝胶SiO2粉体近红外至可见能转化的数值和实验研究

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摘要

Er-doped SiO2 powders were prepared by a simple and straightforward sol-gel method using tetraethoxysilane and erbium triflate as sources of SiO2 and Er2O3. Excitation with near-infrared 800 and 980 nm light initiated an energy up-conversion process in these materials, which resulted in the emission in the predominantly red and green parts of the spectrum. Laser power dependence of the intensity of the up-converted emission was studied both experimentally and by using a numerical model to understand the up-conversion mechanism. Excited state absorption (ESA) and five unique ion-ion energy transfer up-conversion (ETU) processes between the relevant levels are identified as possible mechanisms for the observed luminescence. The efficient NIR-visible upconversion was observed even at comparatively low powers of 200 mW cm~(-2).
机译:用四乙氧基硅烷和三氟甲磺酸as作为SiO2和Er2O3的来源,通过简单直接的溶胶-凝胶法制备了掺Er的SiO2粉末。在这些材料中,近红外800和980 nm的光激发引发了能量上转换过程,从而导致了光谱中主要是红色和绿色的发射。通过实验和通过使用数值模型来理解上转换机理,研究了上转换发射的强度对激光功率的依赖性。相关水平之间的激发态吸收(ESA)和五个独特的离子-离子能量转移上转换(ETU)过程被确定为观察到的发光的可能机制。即使在相对较低的200 mW cm〜(-2)功率下,也可以观察到有效的近红外可见上转换。

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