首页> 外文期刊>Journal of physical chemistry letters >Moderate Humidity Delays Electron-Hole Recombination in Hybrid Organic-Inorganic Perovskites: Time-Domain Ab Initio Simulations Rationalize Experiments
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Moderate Humidity Delays Electron-Hole Recombination in Hybrid Organic-Inorganic Perovskites: Time-Domain Ab Initio Simulations Rationalize Experiments

机译:中等湿度延迟杂化有机-无机钙钛矿中的电子-孔复合:时间域从头算模拟使实验合理化

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Experiments show both positive and negative changes in performance of hybrid organic-inorganic perovskite solar cells upon exposure to moisture. Ab initio nonadiabatic molecular dynamics reveals the influence of humidity on nonradiative electron-hole recombination. In small amounts, water molecules perturb perovskite surface and localize photoexcited electron close to the surface. Importantly, deep electron traps are avoided. The electron-hole overlap decreases, and the excited state lifetime increases. In large amounts, water forms stable hydrogen-bonded networks, has a higher barrier to enter perovskite, and produces little impact on charge localization. At the same time, by contributing high frequency polar vibrations, water molecules increase nonadiabatic coupling and accelerate recombination. In general, short coherence between electron and hole benefits photovoltaic response of the perovskites. The calculated recombination time scales show excellent agreement with experiment. The time-domain atomistic simulations reveal the microscopic effects of humidity on perovskite excited-state lifetimes and rationalize the conflicting experimental observations.
机译:实验表明,混合有机-无机钙钛矿太阳能电池在暴露于湿气后,性能会出现正向和负向变化。从头开始的非绝热分子动力学揭示了湿度对非辐射电子-空穴复合的影响。少量时,水分子会干扰钙钛矿表面,并使受光激发的电子靠近表面。重要的是,避免深电子陷阱。电子-空穴重叠减少,并且激发态寿命增加。大量的水形成稳定的氢键网络,对进入钙钛矿的屏障更高,对电荷的定位几乎没有影响。同时,通过产生高频极性振动,水分子增加了非绝热耦合并加速了重组。通常,电子与空穴之间的短相干有益于钙钛矿的光伏响应。计算的重组时间尺度与实验结果吻合良好。时域原子模拟揭示了湿度对钙钛矿激发态寿命的微观影响,并使矛盾的实验观察合理化。

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