Zhang Linxing, Li Bo, Yuan Jifeng, Wang Mengru, Shen Ting, Huang Fei, Wen Wen, Cao Guozhong, Tian Jianjun
Institute for Advanced Materials and Technology , University of Science and Technology Beijing , Beijing 100083 , China.
Department of Materials and Engineering , University of Washington , Seattle , Washington 98195-2120 , United States.
J Phys Chem Lett. 2018 Jul 5;9(13):3646-3653. doi: 10.1021/acs.jpclett.8b01553. Epub 2018 Jun 20.
Inorganic halide perovskites exhibit significant photovoltaic performance due to their structural stability and high open-circuit voltage ( V). Herein, a general strategy of solution engineering has been implemented to enable a wide solution-processing window for high V (∼1.3 V) and power conversion efficiency (PCE, ∼12.5%). We introduce a nontoxic solvent of dimethyl sulfoxide (DMSO) and an assisted heating process in the fabrication of CsPbIBr (CPI2) to control the improved crystallization. A wide solution-processing window including a wide range of solvent components and solute concentrations has been realized. The CPI2-based inorganic perovskite solar cells (IPSCs) exhibit a high PCE up to 12.52%. More importantly, these devices demonstrate a remarkable V of 1.315 V. The performance has possessed such a region with high V and PCE in all Cs-based IPSCs, unveiling wide solution-processing windows with enhanced solution processability facilitating potential industrial application especially for tandem solar cells.
无机卤化物钙钛矿因其结构稳定性和高开路电压(V)而展现出显著的光伏性能。在此,已实施一种通用的溶液工程策略,以实现用于高V(约1.3 V)和功率转换效率(PCE,约12.5%)的宽溶液处理窗口。我们在CsPbIBr(CPI2)的制备过程中引入无毒溶剂二甲基亚砜(DMSO)和辅助加热工艺来控制结晶改善。已实现包括广泛溶剂成分和溶质浓度范围的宽溶液处理窗口。基于CPI2的无机钙钛矿太阳能电池(IPSCs)展现出高达12.52%的高PCE。更重要的是,这些器件表现出1.315 V的显著V。该性能在所有基于Cs的IPSCs中具备这样一个具有高V和PCE的区域,揭示了具有增强溶液可加工性的宽溶液处理窗口,有利于潜在的工业应用,特别是对于串联太阳能电池。