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Systematic Efficiency Improvement for Cu_2ZnSn(S,Se)_4 Solar Cells By Double Cation Incorporation with Cd and Ge

机译:通过与Cd和Ge掺入双阳离子的系统性提高Cu_2ZnSn(S,Se)_4太阳能电池的效率

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摘要

The performance of kesterite Cu2ZnSn(S,Se)(4) (CZTSSe) solar cell is known to be severely limited by the nonradiative recombination near the heterojunction interface and within the bulk of the CZTSSe absorber resulting from abundant recombination centers and limited carrier collection efficiency. Herein, nonradiative recombination is simultaneously reduced by incorporating small amounts of Ge and Cd into the CZTSSe absorber. Incorporation of Ge effectively increases the p-type doping, thus successfully improving the bulk conductance and reducing the recombination in the CZTSSe bulk via enhanced quasi-Fermi level splitting, while the incorporation of Cd greatly reduces defects near the junction region, enabling larger depletion region width and better carrier collection efficiency. The combined effects of Cd and Ge incorporation give rise to systematic improvement in open-circuit voltage (V-OC), short-circuit current density (J(SC)), and fill factor (FF), enabling a high conversion efficiency of 11.6. This study highlights the multiple cation incorporation strategy for systematically manipulating the opto-electronic properties of kesterite materials, which may also be applicable to other semiconductors.
机译:众所周知,由于丰富的复合中心和有限的载流子收集效率,异质结界面附近和CZTSSe吸收体主体内的非辐射复合严重限制了酮体Cu2ZnSn(S,Se)(4)(CZTSSe)太阳能电池的性能。在此,通过将少量的Ge和Cd掺入CZTSSe吸收器中,同时减少了非辐射复合。Ge的掺入有效地提高了p型掺杂,从而通过增强的准费米能级分裂成功地提高了CZTSSe体的体电导率并减少了复合,而Cd的掺入大大减少了结区附近的缺陷,实现了更大的耗尽区宽度和更好的载流子收集效率。Cd和Ge的结合效应使开路电压(V-OC)、短路电流密度(J(SC))和填充因子(FF)得到系统性改善,实现了11.6%的高转换效率。本研究重点介绍了系统地操纵酯石材料光电性能的多阳离子掺入策略,该策略也可能适用于其他半导体。

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