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Band-gap-graded Cu2ZnSn(S1-xSex)4 Solar Cells Fabricated by an Ethanol-based Particulate Precursor Ink Route

机译:带隙分级的Cu2ZnSn(S1-xSex)4太阳能电池通过乙醇基颗粒状前驱体墨水路线制造

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摘要

Solution processing of earth-abundant Cu2ZnSn(S1-x,Sex)4 (CZTSSe) absorber materials is an attractive research area in the economical and large-scale deployment of photovoltaics. Here, a band-gap-graded CZTSSe thin-film solar cell with 7.1% efficiency was developed using non-toxic solvent-based ink without the involvement of complex particle synthesis, highly toxic solvents, or organic additives. Despite the high series resistance due to the presence of a thick Mo(S,Se)x layer and Zn(S,Se) aggregates, a high short-circuit current density (JSC) was generated. In addition, there was no significant difference in open circuit voltages (VOC) between CZTS (0.517 V) and CZTSSe (0.505–0.479 V) cells, despite a significant band gap change from 1.51 eV to 1.24 eV. The high JSC and less loss of VOC are attributed to the effect of band gap grading induced by Se grading in the CZTSSe absorber layer. Our environmentally benign ink approach will enable the realization of low-cost, large-area, high-efficiency thin-film solar cells.
机译:富土的Cu2ZnSn(S1-x,Sex)4(CZTSSe)吸收剂材料的固溶处理在光伏技术的经济和大规模部署中是一个有吸引力的研究领域。在此,使用无毒溶剂基油墨开发了带隙渐变的CZTSSe薄膜太阳能电池,效率为7.1%,无需复杂的颗粒合成,高毒溶剂或有机添加剂。尽管由于存在厚的Mo(S,Se)x层和Zn(S,Se)聚集体而导致高串联电阻,但仍产生了高短路电流密度(JSC)。此外,尽管从1.51 eV到1.24 eV的带隙变化很大,但CZTS(0.517 V)和CZTSSe(0.505-0.479 V)电池之间的开路电压(VOC)没有显着差异。高JSC和较少的VOC损失归因于CZTSSe吸收层中Se分级引起的带隙分级效应。我们对环境无害的墨水方法将能够实现低成本,大面积,高效的薄膜太阳能电池。

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