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#32093473   2020/03/05 To Up

Modifying Mesoporous TiO by Ammonium Sulfonate Boosts Performance of Perovskite Solar Cells.

Mesoporous-structure perovskite solar cells (meso-PVKSCs) have been widely utilized due to the achieved high efficiency for which the TiO layer usually suffers from sufficient electron trap states, low electron mobility, and inavoidable catalytic activity. Herein, a mesoporous TiO (m-TiO) layer is modified by tetraethylammonium -toluenesulfonate (abbreviated as TEATS) for the first time, leading to a significant photoelectric conversion efficiency enhancement from 19.14 to 20.69% for CsMAFAPbIBr (abbreviated as CsMAFA) meso-PVKSCs. In particular, the obtained champion open-circuit voltage () is 1.18 V, which is a record high value for meso-PVKSCs with CsMAFA triple cation mixed perovskite. A series of measurements were employed to investigate the influences of TEATS modification on the energy band structures of TiO as well as the CsMAFA perovskite layer atop, unveiling that TEATS modification benefits defect passivation of the TiO film along with a decrease in the work function of TiO. Besides, TEATS modification helps to improve the wettability of perovskite precursors on the m-TiO substrate, affording improved film quality of perovskite with enhanced crystallinity and grain size. Consequently, the trap states existed in the perovskite film can be passivated, and the interfacial charge recombination is suppressed. This further benefits the improvement of the ambient stability of devices.
Mengmeng Zhang, Weiran Zhou, Wanpei Hu, Bairu Li, Qiquan Qiao, Shangfeng Yang

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