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通过使用两个具有相似最低未占分子轨道(LUMO)能级的兼容受体实现三元有机太阳能电池效率超过15.7%

Over 15.7% Efficiency of Ternary Organic Solar Cells by Employing Two Compatible Acceptors with Similar LUMO Levels.

作者信息

Hu Zhenghao, Yang Linqiang, Gao Wei, Gao Jinhua, Xu Chunyu, Zhang Xiaoli, Wang Zhi, Tang Weihua, Yang Chuluo, Zhang Fujun

机构信息

Key Laboratory of Luminescence and Optical Information, Ministry of Education, Beijing Jiaotong University, Beijing, 100044, P. R. China.

School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing, 210094, P. R. China.

出版信息

Small. 2020 Apr;16(17):e2000441. doi: 10.1002/smll.202000441. Epub 2020 Apr 3.

Abstract

Efficient organic solar cells (OSCs) are fabricated using polymer PM6 as donor, and IPTBO-4Cl and MF1 as acceptors. The power conversion efficiency (PCE) of IPTBO-4Cl based and MF1 based binary OSCs individually arrive to 14.94% and 12.07%, exhibiting markedly different short circuit current density (J ) of 23.18 mA cm versus 17.01 mA cm , fill factor (FF) of 72.17% versus 78.18% and similar open circuit voltage (V ) of 0.893 V versus 0.908 V. The two acceptors, IPTBO-4Cl and MF1, have similar lowest unoccupied molecular orbital levels, which is beneficial for efficient electron transport in the ternary active layer. The PCE of optimized ternary OSCs arrives to 15.74% by incorporating 30 wt% MF1 in acceptors, resulting from the simultaneously increased J of 23.20 mA cm , V of 0.897 V, and FF of 75.64% in comparison with IPTBO-4Cl based binary OSCs. The gradually increased FFs of ternary OSCs indicate the well-optimized phase separation and molecular arrangement with MF1 as morphology regulator. This work may provide a new viewpoint for selecting an appropriate third component to achieve efficient ternary OSCs from materials and photovoltaic parameters of two binary OSCs.

摘要

高效有机太阳能电池(OSCs)采用聚合物PM6作为供体,IPTBO - 4Cl和MF1作为受体来制备。基于IPTBO - 4Cl和基于MF1的二元有机太阳能电池的功率转换效率(PCE)分别达到14.94%和12.07%,短路电流密度(J)显著不同,分别为23.18 mA/cm²和17.01 mA/cm²,填充因子(FF)分别为72.17%和78.18%,开路电压(V)相似,分别为0.893 V和0.908 V。两种受体IPTBO - 4Cl和MF1具有相似的最低未占据分子轨道能级,这有利于三元活性层中的高效电子传输。通过在受体中掺入30 wt%的MF1,优化后的三元有机太阳能电池的PCE达到15.74%,这是由于与基于IPTBO - 4Cl的二元有机太阳能电池相比,J同时增加到23.20 mA/cm²,V为0.897 V,FF为75.64%。三元有机太阳能电池逐渐增加的填充因子表明,以MF1作为形态调节剂,相分离和分子排列得到了很好的优化。这项工作可能从两种二元有机太阳能电池的材料和光伏参数方面,为选择合适的第三组分以实现高效三元有机太阳能电池提供一个新的视角。

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