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首页> 外文期刊>Journal of Applied Physics >Optimizing infrared to near infrared upconversion quantum yield of β-NaYF4:Er3+ in fluoropolymer matrix for photovoltaic devices
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Optimizing infrared to near infrared upconversion quantum yield of β-NaYF4:Er3+ in fluoropolymer matrix for photovoltaic devices

机译:优化光伏器件含氟聚合物基体中β-NaYF4:Er 3 + 的红外至近红外上转换量子产率

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摘要

The present study reports for the first time the optimization of the infrared (1523 nm) to near-infrared (980 nm) upconversion quantum yield (UC-QY) of hexagonal trivalent erbium doped sodium yttrium fluoride (β-NaYF4:Er3+) in a perfluorocyclobutane (PFCB) host matrix under monochromatic excitation. Maximum internal and external UC-QYs of 8.4% ± 0.8% and 6.5% ± 0.7%, respectively, have been achieved for 1523 nm excitation of 970 ± 43 Wm-2 for an optimum Er3+ concentration of 25 mol% and a phosphor concentration of 84.9 w/w% in the matrix. These results correspond to normalized internal and external efficiencies of 0.86 ± 0.12 cm2 W-1 and 0.67 ± 0.10 cm2 W-1, respectively. These are the highest values ever reported for β-NaYF4:Er3+ under monochromatic excitation. The special characteristics of both the UC phosphor β-NaYF4:Er3+ and the PFCB matrix give rise to this outstanding property. Detailed power and time dependent luminescence measurements reveal energy transfer upconversion as the dominant UC mechanism.
机译:本研究首次报道了六角形三价掺杂氟化钠钇氟化钠(β-NaYF 4 <激发下全氟环丁烷(PFCB)基质中的/ inf>:Er 3 + )。对于970±43 Wm -2 的1523 nm激发,实现​​最佳的Er 的最大内部和外部UC-QYs分别达到8.4%±0.8%和6.5%±0.7%。基质中3+浓度为25 mol%,磷光体浓度为84.9 w / w%。这些结果对应于标准化的内部和外部效率0.86±0.12 cm 2 W -1 和0.67±0.10 cm 2 W - 1 。这是有色激发下β-NaYF 4 :Er 3 + 的最高值。 UC荧光粉β-NaYF 4 :Er 3 + 和PFCB基质的特殊特性都赋予了这种优异的性能。详细的功率和时间相关发光测量结果表明,能量转移上转换是主要的UC机制。

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