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Photovoltaic effect in earth abundant solution processed Cu2MnSnS4 and Cu2MnSn(S,Se)(4) thin films

机译:富地溶液处理的Cu2MnSnS4和Cu2MnSn(S,Se)(4)薄膜中的光伏效应

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In this work, we present the first report on thin film solar cells that employ Cu2MnSnS4 (CMTS) and Cu2MnSn(S, Se)(4) (CMTSSe) as the absorber. CMTS and CMTSSe thin films are fabricated using a low cost spray pyrolysis technique in ambient atmosphere using water as a solvent. The crystal structure of the materials are similar to the established kesterite type photovoltaic materials such as Cu2ZnSn(S, Se)(4) (CZTSSe). The bandgap of these materials is between 1.4-1.7 eV, which is ideal for optimum solar absorption and can be tuned by varying the ratio of the elemental constituents. The photovoltaic device with a structure of Mo/CMTS/CdS/TCO/top electrode is fabricated as a proof-of-concept and yields a power conversion efficiency of similar to 0.73% for the best optimized CMTS device with Na doping. Through analysis of the device characteristics, we identify a key problem of very high carrier density in the CMTS/CMTSSe absorber that leads to short collection length, low V-oc, low quantum efficiency at long wavelength and high shunt conductance that quench the fill factor. We also discuss several routes to improve the device performance. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项工作中,我们提出了第一个关于采用Cu2MnSnS4(CMTS)和Cu2MnSn(S,Se)(4)(CMTSSe)作为吸收剂的薄膜太阳能电池的报告。 CMTS和CMTSSe薄膜是使用低成本喷雾热解技术在环境气氛中以水为溶剂制成的。该材料的晶体结构类似于已建立的钾钛矿型光伏材料,例如Cu2ZnSn(S,Se)(4)(CZTSSe)。这些材料的带隙在1.4-1.7 eV之间,这是最佳吸收太阳光的理想选择,可以通过改变元素成分的比例进行调整。具有Mo / CMTS / CdS / TCO /顶部电极结构的光伏器件被制造为概念验证,对于采用Na掺杂的最佳优化CMTS器件,其功率转换效率约为0.73%。通过分析器件特性,我们确定了一个关键问题,即CMTS / CMTSSe吸收器中的载流子密度非常高,这会导致收集长度短,V-oc低,长波长处的量子效率低以及分流电导率高,从而抑制了填充因子。我们还讨论了几种改善设备性能的途径。 (C)2016 Elsevier B.V.保留所有权利。

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