Zhang Xing, Ma Qiaoyan, Wang Yousheng, Zheng Jianzha, Liu Quanxi, Liu Liming, Yang Peng, He Wujie, Cao Ye, Duan Weiyuan, Ding Kaining, Mai Yaohua
The College of Electronic Information, Qingdao University, Qingdao 266071, China.
Institute of New Energy Technology, College of Physics & Optoelectronic Engineering, Jinan University, Guangzhou 510632, China.
ACS Nano. 2024 Jun 18;18(24):15991-16001. doi: 10.1021/acsnano.4c04341. Epub 2024 Jun 3.
Phase heterogeneity of bromine-iodine (Br-I) mixed wide-bandgap (WBG) perovskites has detrimental effects on solar cell performance and stability. Here, we report a heterointerface anchoring strategy to homogenize the Br-I distribution and mitigate the segregation of Br-rich WBG-perovskite phases. We find that methoxy-substituted phenyl ethylammonium (-MeOPEA) ligands not only contribute to the crystal growth with vertical orientation but also promote halide homogenization and defect passivation near the buried perovskite/hole transport layer (HTL) interface as well as reduce trap-mediated recombination. Based on improvements in WBG-perovskite homogeneity and heterointerface contacts, NiO-based opaque WBG-perovskite solar cells (WBG-PSCs) achieved impressive open-circuit voltage () and fill factor (FF) values of 1.22 V and 83%, respectively. Moreover, semitransparent WBG-PSCs exhibit a PCE of 18.5% (15.4% for the IZO front side) and a high FF of 80.7% (79.4% for the IZO front side) for a designated illumination area (da) of 0.12 cm. Such a strategy further enables 24.3%-efficient two-terminal perovskite/silicon (double-polished) tandem solar cells (da of 1.159 cm) with a high of over 1.90 V. The tandem devices also show high operational stability over 1000 h during T lifetime measurements.
溴 - 碘(Br - I)混合宽带隙(WBG)钙钛矿的相不均匀性对太阳能电池的性能和稳定性有不利影响。在此,我们报告一种异质界面锚定策略,以均匀化Br - I分布并减轻富Br的WBG钙钛矿相的偏析。我们发现甲氧基取代的苯乙铵(-MeOPEA)配体不仅有助于垂直取向的晶体生长,还能促进卤化物均匀化以及在掩埋的钙钛矿/空穴传输层(HTL)界面附近的缺陷钝化,同时减少陷阱介导的复合。基于WBG钙钛矿均匀性和异质界面接触的改善,基于NiO的不透明WBG钙钛矿太阳能电池(WBG - PSCs)分别实现了令人印象深刻的开路电压()和填充因子(FF)值,分别为1.22 V和83%。此外,对于指定的0.12 cm²照明面积(da),半透明WBG - PSCs的光电转换效率(PCE)为18.5%(IZO正面为15.4%),填充因子高达80.7%(IZO正面为79.4%)。这种策略进一步实现了24.3%效率的两端钙钛矿/硅(双面抛光)串联太阳能电池(da为1.159 cm²),其开路电压超过1.90 V。在T寿命测量期间,串联器件在超过1000小时的时间内也表现出高操作稳定性。