Chen Dazheng, Shi Wenjing, Gao Yan, Wang Sai, Tian Baichuan, Wang Zhizhe, Zhu Weidong, Zhou Long, Xi He, Dong Hang, Chai Wenming, Zhang Chunfu, Zhang Jincheng, Hao Yue
State Key Laboratory of Wide Bandgap Semiconductor Devices and Integrated Technology, Faculty of Integrated Circuit, Xidian University, Xi'an 710071, China.
Science and Technology on Reliability Physics and Application of Electronic Component Laboratory, China Electronic Product Reliability and Environmental Testing Research Institute, Guangzhou 511370, China.
Molecules. 2025 Mar 10;30(6):1237. doi: 10.3390/molecules30061237.
Semitransparent perovskite solar cells (PSCs) that possess a high-power conversion efficiency (PCE) and high average visible light transmittance (AVT) can be employed in applications such as photovoltaic windows. In this study, a bifacial modification comprising a buried layer of [4-(3,6-Dimethyl-9H-carbazol-9-yl) butyl] phosphonic acid (Me-4PACz) and a surface passivator of 2-(2-Thienyl) ethylamine hydroiodide (2-TEAI) was proposed to enhance device performance. When the concentrations of Me-4PACz and 2-TEAI were 0.3 mg/mL and 3 mg/mL, opaque PSCs with a 1.57 eV perovskite absorber achieved a PCE of 22.62% (with a V of 1.18 V) and retained 88% of their original value after being stored in air for 1000 h. By substituting a metal electrode with an indium zinc oxide electrode, the resulting semitransparent PSCs showed a PCE of over 20% and an AVT of 9.45%. It was, therefore, suggested that the synergistic effect of Me-4PACz and 2-TEAI improved the crystal quality of perovskites and the carrier transport in devices. When employing an absorber with a wider bandgap (1.67 eV), the corresponding PSC obtained a higher AVT of 20.71% and maintained a PCE of 18.73%; these values show that a superior overall performance is observed compared to that in similar studies. This work is conductive to the future application of semitransparent PSCs.
具有高功率转换效率(PCE)和高平均可见光透射率(AVT)的半透明钙钛矿太阳能电池(PSC)可用于光伏窗户等应用。在本研究中,提出了一种双面修饰方法,包括[4-(3,6-二甲基-9H-咔唑-9-基)丁基]膦酸(Me-4PACz)的埋层和2-(2-噻吩基)乙胺氢碘化物(2-TEAI)的表面钝化剂,以提高器件性能。当Me-4PACz和2-TEAI的浓度分别为0.3 mg/mL和3 mg/mL时,具有1.57 eV钙钛矿吸收层的不透明PSC实现了22.62%的PCE(V为1.18 V),并在空气中储存1000小时后保留了其原始值的88%。通过用铟锌氧化物电极代替金属电极,所得半透明PSC的PCE超过20%,AVT为9.45%。因此,表明Me-4PACz和2-TEAI的协同效应改善了钙钛矿的晶体质量和器件中的载流子传输。当使用带隙更宽(1.67 eV)的吸收层时,相应的PSC获得了更高的20.71%的AVT,并保持了18.73%的PCE;这些值表明,与类似研究相比,观察到了优异的整体性能。这项工作有助于半透明PSC的未来应用。