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Band Gap Tuning and Defect Tolerance of Atomically Thin Two- Dimensional Organic-Inorganic Halide Perovskites

机译:带隙间隙调整和原子薄二维有机 - 无机卤化物钙钛矿的缺陷容限

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摘要

Organic−inorganic halide perovskites have proven highly successful for photovoltaics but suffer from low stability, which deteriorates their performance over time. Recent experiments have demonstrated that low dimensional phases of the hybrid perovskites may exhibit improved stability. Here we report first-principles calculations for isolated monolayers of the organometallic halide perovskites (CHNH)MXY, where M = Pb, Ge, Sn and X,Y = Cl, Br, I. The band gaps computed using the GLLB-SC functional are found to be in excellent agreement with experimental photoluminescence data for the already synthesized perovskites. Finally, we study the effect of different defects on the band structure. We find that the most common defects only introduce shallow or no states in the band gap, indicating that these atomically thin 2D perovskites are likely to be defect tolerant.
机译:已证明有机-无机卤化物钙钛矿对光伏发电非常成功,但稳定性低,随着时间的推移其性能会下降。最近的实验表明,杂化钙钛矿的低维相可表现出改善的稳定性。在这里,我们报告有机金属卤化物钙钛矿(CHNH)MXY的孤立单层的第一性原理计算,其中M = Pb,Ge,Sn和X,Y = Cl,Br,I。使用GLLB-SC官能团计算的带隙为发现与已经合成的钙钛矿的实验光致发光数据非常吻合。最后,我们研究了不同缺陷对能带结构的影响。我们发现最常见的缺陷仅在带隙中引入浅状态或无状态,这表明这些原子上薄的2D钙钛矿可能具有缺陷耐受性。

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