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Molecular Engineering of Organic Spacer Cations for Efficient and Stable Formamidinium Perovskite Solar Cell

机译:有机间隔阳离子的分子工程,高效稳定甲脒钙钛矿太阳能电池

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Low dimensional (LD) perovskite materials generally exhibit superior chemical stability against ambient moisture and thermal stress than that of 3D perovskites. Recently, LD perovskite has been used as a passivation layer on the surface of 3D perovskite grains. Although various LD perovskites have been developed focusing on their hydrophobicity, the impact of crystal structure of LD perovskite on the photovoltaic performance of perovskite solar cell (PSC) is still uncertain. In this work, the effects of the structural characteristics of LD perovskites on the crystal formation of formamidinium lead triiodide (alpha-FAPbI(3)) and on the optoelectrical properties of PSCs are elucidated. The phase-transformation kinetics of FAPbI(3)mixed with LD perovskites is studied using the Johnson-Mehl-Avrami-Kolmogorov model. It is found that the arrangement of PbI(6)octahedra in the LD perovskite changes the rate of alpha-FAPbI(3)formation. Facilitated nucleation of alpha-FAPbI(3)at the LD/FAPbI(3)interface results in minimal structural disorder and prolonged charge-carrier lifetimes. As a result, the PSC with the optimized LD perovskite structure exhibits a power conversion efficiency of 21.25% from a reverse current-voltage scan, and stabilized efficiency of 19.95% with excellent ambient stability without being encapsulated.
机译:低尺寸(LD)钙钛矿材料通常表现出较高的化学稳定性,而不是3D Perovskites的水分和热应力。最近,LD Perovskite已被用作3D Perovskite谷物表面上的钝化层。虽然已经开发了各种LD Perovskites,其疏水性,但LD Perovskite的晶体结构对Perovskite太阳能电池(PSC)的光伏性能的影响仍然不确定。在这项工作中,LD Perovskites结构特性对甲脒铅三碘化物(α-FAPBI(3))和PSC的光电性能的影响。使用Johnson-Mehl-Avrami-Kolmogorov模型研究了与LD Perovskites混合的FAPBI(3)的相变动力学。发现LD钙钛矿中PBI(6)八面体的排列改变了α-FAPBI(3)的形成速率。促进在LD / FAPBI(3)界面处的α-FAPBI(3)的成核导致最小的结构障碍和延长的电荷载体寿命。结果,具有优化的LD PEROVSKITE结构的PSC表现出从反向电流 - 电压扫描的功率转换效率为21.25%,稳定效率为19.95%,具有出色的环境稳定性而不被封装。

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