首页> 外文期刊>Dalton transactions: An international journal of inorganic chemistry >Bright thermal (blackbody) emission of visible light from LnO(2) (Ln = Pr, Tb), photoinduced by a NIR 980 nm laser
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Bright thermal (blackbody) emission of visible light from LnO(2) (Ln = Pr, Tb), photoinduced by a NIR 980 nm laser

机译:来自LNO(2)(LN = PR,TB)的可见光的明亮热(黑体)发射,由NIR 980 NM激光照射

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摘要

The increasing demand for renewable energy has been promoting a rapid development of photovoltaic technologies. Given this, photoinduced thermal emission is being explored with the aim of improving solar cell performance by converting low-energy IR photons into visible light. Here, we report the light-induced blackbody emission from LnO(2) (Ln = Pr and Tb) as a potential emitter for thermophotovoltaic applications. Lanthanide dioxides display broad IR absorption and a direct optical band gap of 1.49 (PrO2) and 1.51 eV (TbO2). These materials achieve a maximum temperature of similar to 1500 K under a power density excitation of 160 W cm(-2) and display a stable bright light emission. Thermal emission can be tuned from laser power density modulation.
机译:不断增长的可再生能源需求一直促进光伏技术的快速发展。 考虑到这一点,正在探索光抑制的热排放,其目的是通过将低能量红外光子转换成可见光来改善太阳能电池性能。 在这里,我们将来自LNO(2)(LN = PR和TB)的光诱导的黑体发射作为热敏光伏应用的潜在发射器。 镧系元素二氧化氧化物显示宽IR吸收和1.49(Pro2)和1.51eV(TbO2)的直接光带隙。 这些材料在160W cm(-2)的功率密度激发下实现了与1500 k相似的最高温度,并显示出稳定的明亮发光。 可以从激光功率密度调制调节热发射。

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