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首页> 外文期刊>Journal of physical chemistry letters >Mixed Cs and FA Cations Slow Electron–Hole Recombination in FAPbI3 Perovskites by Time-Domain Ab Initio Study: Lattice Contraction versus Octahedral Tilting
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Mixed Cs and FA Cations Slow Electron–Hole Recombination in FAPbI3 Perovskites by Time-Domain Ab Initio Study: Lattice Contraction versus Octahedral Tilting

机译:通过时域AB INITIO研究,FAPBI 3 Perovskites中的混合CS和FA阳离子缓慢电子空穴重组:格子收缩与八面体倾斜

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摘要

Using time domain density functional theory combined with nonadiabatic (NA) molecular dynamics, we show that electron–hole recombination takes subnanoseconds in FAPbI_(3), showing excellent agreement with experiment. Cs doping retards charge recombination by factors of 1.1 and 3.1 due to lattice contraction and octahedral tilting, respectively. Lattice contraction decreases the NA coupling and increases the coherence time arising from the suppressed atomic fluctuations, slightly slowing recombination because the two factors have an opposite influence on quantum transition. In contrast, octahedral tilting simultaneously decreases the NA coupling, thanks to the reduced overlap between Pb and I orbitals, and the coherence time, extending the excited-state lifetime over 1 ns. Our simulations provide a mechanistic understanding for delayed charge losses in the mixed Cs and FA system, suggesting a rational strategy to improve perovskite solar cell performance.
机译:使用时域密度函数理论与非等压(NA)分子动力学结合,我们表明电子孔重组在FAPBI_(3)中服用亚基癸磺,显示出与实验的良好协议。 由于晶格收缩和八面体倾斜,CS掺杂通过1.1和3.1的因子延迟了电荷重组。 晶格收缩降低了Na偶联,增加了抑制原子波动引起的相干时间,略微减慢重组,因为这两个因素对量子过渡的影响相反。 相反,由于PB和I轨道之间的重叠和相干时间,延长了八面体倾斜同时降低NA耦合,并且在1 ns上延伸激发状态寿命。 我们的模拟为混合CS和FA系统中的延迟电荷损失提供了机械理解,这表明改善钙钛矿太阳能电池性能的合理策略。

著录项

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  • 作者

    Lu Qiao; Xueqin Sun; Run Long;

  • 作者单位

    College of Chemistry Key Laboratory of Theoretical &

    Computational Photochemistry of Ministry of Education Beijing Normal University;

    School of Environmental and Material Engineering Yantai University;

    College of Chemistry Key Laboratory of Theoretical &

    Computational Photochemistry of Ministry of Education Beijing Normal University;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 物理化学(理论化学)、化学物理学;
  • 关键词

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