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Study on the efficient PV/TE characteristics of the self-assembled thin films based on bismuth telluride/cadmium telluride

机译:碲化铋/碲化镉自组装薄膜的有效PV / TE特性研究

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摘要

Solar radiation has a spectral distribution ranging from short wavelengths (200-800 nm, visible part) to long wavelengths (800-3000 nm, heat part). Cadmium telluride and bismuth telluride are well known photovoltaic (PV) and thermoelectric (TE) materials, respectively. CdTe converts light energy into electricity and Bi2Te3 converts heat into electricity. To effectively use the entire solar spectrum for energy conversion, a new type of solar cell based on a Bi2Te3/CdTe composite in a core/shell structure was designed and prepared using a wet chemical method. X-ray diffraction and high-resolution transmission electron microscopy confirmed the formation of Bi2Te3/CdTe in a core/shell structure with high crystallinity. Bi2Te3 nanoparticles function as built-in nanoscale electron generators to convert heat into electricity and CdTe functions as a photovoltaic cell. The efficiency of the thin film solar cell device was found to be 2.5% at room temperature and 4.8% when exposed to sunlight. The combined PV and TE modules resulted in an overall power conversion efficiency of 4.8%.
机译:太阳辐射的光谱分布范围从短波长(200-800 nm,可见部分)到长波长(800-3000 nm,热部分)。碲化镉和碲化铋分别是众所周知的光伏(PV)和热电(TE)材料。 CdTe将光能转化为电能,Bi2Te3将热量转化为电能。为了有效地利用整个太阳光谱进行能量转换,设计并使用湿化学方法制备了一种新型的基于Bi2Te3 / CdTe复合材料的核/壳结构太阳能电池。 X射线衍射和高分辨率透射电子显微镜证实,Bi2Te3 / CdTe以高结晶度的核/壳结构形成。 Bi2Te3纳米粒子充当内置的纳米级电子发生器,将热量转化为电能,而CdTe充当光伏电池。发现薄膜太阳能电池装置的效率在室温下为2.5%,而在阳光下则为4.8%。组合的PV和TE模块产生的总功率转换效率为4.8%。

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