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首页> 外文期刊>Optical Materials >Application of bidirectional (up and down)-conversion luminescence material (GdBO_3:Yb~(3+) /Tb~(3+) ) in CdSe_(0.4)S_(0.6) quantum dot-sensitized solar cells
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Application of bidirectional (up and down)-conversion luminescence material (GdBO_3:Yb~(3+) /Tb~(3+) ) in CdSe_(0.4)S_(0.6) quantum dot-sensitized solar cells

机译:双向(上下)转换发光材料(GdBO_3:Yb〜(3+)/ Tb〜(3+))在CdSe_(0.4)S_(0.6)量子点敏化太阳能电池中的应用

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摘要

A novel bidirectional (up and down)-conversion luminescence agent (GdBO3:Yb3+/Tb3+), that can convert ultraviolet lights and near-infrared lights into visible lights, is employed to enhance the light capture capability of CdSe0.4S0.6 quantum dot-sensitized solar cells (QDSSCs). In this study, the GdBO3:Yb3+/Tb3+@TiO2 photoanode is fabricated by sol-gel drop-coating method. And then, the CdSe0.4S0.6 quantum dots (QDs) are deposited on the prepared photoanode surface by successive ionic layer adsorption and reaction (SILAR) technique at room temperature. The photoelectric measurements show that the light capture capability of the CdSe0.4S0.6 QDSSCs device can be obviously enhanced after adding GdBO3:Yb3+/Tb3+ nanoparticles and the CdSe0.4S0.6/GdBO3:Yb3+/Tb3+@TiO2 photoanode with 1.0% adding amount of GdBO3:Yb3+/Tb3+ displays the highest photovoltaic performance. The presence of GdBO3:Yb3+/Tb3+ nanoparticles makes CdSe0.4S0.6 QDs indirectly utilize ultraviolet lights and near-infrared lights in solar lights. In addition, the scattering effect of GdBO3:Yb3+/Tb3+ nanoparticles in TiO2 films can cause the reflection of the incident lights. The reflected lights can also be absorbed by the CdSe0.4S0.6 QDs, increasing light capture capability. The research results demonstrate a potential applied value of bidirectional (up and down)-conversion luminescence agent in QDSSCs.
机译:可以将紫外光和近红外光转换为可见光的新型双向(上下)转换发光剂(GdBO3:Yb3 + / Tb3 +)用于增强CdSe0.4S0.6量子点的光捕获能力敏化太阳能电池(QDSSC)。本研究采用溶胶-凝胶滴涂法制备了GdBO3:Yb3 + / Tb3 + @ TiO2光电阳极。然后,在室温下通过连续的离子层吸附和反应(SILAR)技术将CdSe0.4S0.6量子点(QDs)沉积在制备的光阳极表面上。光电测量表明,加入GdBO3:Yb3 + / Tb3 +纳米粒子和加入1.0%CdSe0.4S0.6 / GdBO3:Yb3 + / Tb3 + @ TiO2光电阳极后,CdSe0.4S0.6 QDSSCs器件的光捕获能力明显提高。 GdBO3:Yb3 + / Tb3 +的量显示出最高的光伏性能。 GdBO3:Yb3 + / Tb3 +纳米粒子的存在使CdSe0.4S0.6 QD间接利用紫外线和太阳光中的近红外光。此外,GdBO3:Yb3 + / Tb3 +纳米粒子在TiO2薄膜中的散射效应会引起入射光的反射。反射的光也可以被CdSe0.4S0.6 QD吸收,从而提高了光捕获能力。研究结果表明双向(上下)转换发光剂在QDSSC中的潜在应用价值。

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