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首页> 外文期刊>Solar Energy Materials and Solar Cells: An International Journal Devoted to Photovoltaic, Photothermal, and Photochemical Solar Energy Conversion >Temperature dependent current-voltage and admittance spectroscopy on heat-light soaking effects of Cu(In,Ga)Se-2 solar cells with ALD-Zn (O,S) and CBD-ZnS(O,OH) buffer layers
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Temperature dependent current-voltage and admittance spectroscopy on heat-light soaking effects of Cu(In,Ga)Se-2 solar cells with ALD-Zn (O,S) and CBD-ZnS(O,OH) buffer layers

机译:温度相关的电流-电压和导纳光谱对具有ALD-Zn(O,S)和CBD-ZnS(O,OH)缓冲层的Cu(In,Ga)Se-2太阳能电池的热光吸收效果的影响

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摘要

Heat-light soaking effects on Cu(In,Ga)Se-2 (CIGS) solar cells with atomic layer deposition (ALD)-Zn(O,S) and chemical bath deposition (CBD)-ZnS(O,OH) buffer layers were investigated using temperature-dependent current-voltage and admittance spectroscopy measurements. Both CBD-ZnS(O,OH)/CIGS and ALD-Zn(O,S)/CIGS solar cells showed a significant increase in the cell performance after the combined heat and light soaking (HLS) post-treatment. Temperature-dependent current-voltage measurements showed a reduced roll-over of current density-voltage curve after the HLS post-treatment, suggesting a reduced recombination at the absorber/buffer interface. Admittance spectroscopy measurement revealed a remarkable shift towards shallower energy positions for the defect NI after HLS post-treatment in both CIGS solar cells fabricated using CBD and ALD methods. By optimizing the HLS and the deposition conditions for each buffer layer, CBD-ZnS(O,OH)/CIGS and ALD-Zn(O,S)/CIGS solar cells yielded total efficiencies of 18.8 and 18.7%, respectively. (c) 2015 Elsevier B.V. All rights reserved.
机译:具有原子层沉积(ALD)-Zn(O,S)和化学浴沉积(CBD)-ZnS(O,OH)缓冲层的Cu(In,Ga)Se-2(CIGS)太阳能电池的热光浸泡效应使用取决于温度的电流-电压和导纳光谱测量进行了研究。 CBD-ZnS(O,OH)/ CIGS和ALD-Zn(O,S)/ CIGS太阳能电池在组合的热和光浸泡(HLS)后处理后均显示出电池性能的显着提高。温度相关的电流-电压测量结果表明,HLS后处理后电流密度-电压曲线的翻转减小,这表明吸收剂/缓冲液界面的重组减少。导纳光谱测量显示,在使用CBD和ALD方法制造的CIGS太阳能电池中,HLS后处理后,缺陷NI​​均朝着较浅的能量位置显着转移。通过优化每个缓冲层的HLS和沉积条件,CBD-ZnS(O,OH)/ CIGS和ALD-Zn(O,S)/ CIGS太阳能电池的总效率分别为18.8和18.7%。 (c)2015 Elsevier B.V.保留所有权利。

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