Qi Jiayi, Wang Ruiqin, Zeng Ye, Gao Xing, Chen Xin, Shen Wei, Wu Fei, Li Ming, He Rongxing, Liu Xiaorui
Chongqing Key Laboratory of Soft-Matter Material Chemistry and Function Manufacturing, School of Chemistry and Chemical Engineering, Southwest University, Chongqing, 400715, P. R. China.
Chongqing Key Laboratory for Advanced Materials and Technologies of Clean Energy, School of Materials and Energy, Southwest University, Chongqing, 400715, P. R. China.
Small. 2024 Sep;20(36):e2312122. doi: 10.1002/smll.202312122. Epub 2024 May 6.
Management of functional groups in hole transporting materials (HTMs) is a feasible strategy to improve perovskite solar cells (PSCs) efficiency. Therefore, starting from the carbazole-diphenylamine-based JY7 molecule, JY8 and JY9 molecules are incorporated into the different electron-withdrawing groups of fluorine and cyano groups on the side chains. The theoretical results reveal that the introduction of electron-withdrawing groups of JY8 and JY9 can improve these highest occupied molecular orbital (HOMO) energy levels, intermolecular stacking arrangements, and stronger interface adsorption on the perovskite. Especially, the results of molecular dynamics (MD) indicate that the fluorinated JY8 molecule can yield a preferred surface orientation, which exhibits stronger interface adsorption on the perovskite. To validate the computational model, the JY7-JY9 are synthesized and assembled into PSC devices. Experimental results confirm that the HTMs of JY8 exhibit outstanding performance, such as high hole mobility, low defect density, and efficient hole extraction. Consequently, the PSC devices based on JY8 achieve a higher PCE than those of JY7 and JY9. This work highlights the management of the electron-withdrawing groups in HTMs to realize the goal of designing HTMs for the improvement of PSC efficiency.
调控空穴传输材料(HTMs)中的官能团是提高钙钛矿太阳能电池(PSCs)效率的一种可行策略。因此,从基于咔唑 - 二苯胺的JY7分子出发,将JY8和JY9分子引入侧链上不同的吸电子基团氟和氰基。理论结果表明,引入JY8和JY9的吸电子基团可以提高这些最高占据分子轨道(HOMO)能级、分子间堆积排列以及对钙钛矿更强的界面吸附。特别是,分子动力学(MD)结果表明,氟化的JY8分子可以产生优选的表面取向,在钙钛矿上表现出更强的界面吸附。为了验证计算模型,合成了JY7 - JY9并组装成PSC器件。实验结果证实,JY8的HTMs表现出优异的性能,如高空穴迁移率、低缺陷密度和高效的空穴提取。因此,基于JY8的PSC器件实现了比JY7和JY9更高的光电转换效率(PCE)。这项工作突出了调控HTMs中的吸电子基团以实现设计用于提高PSC效率的HTMs的目标。