化学
钙钛矿(结构)
范德瓦尔斯力
密度泛函理论
维数之咒
钙钛矿太阳能电池
卤化物
磁滞
化学物理
能量转换效率
化学计量学
插层(化学)
光伏系统
纳米技术
结晶学
计算化学
无机化学
物理化学
分子
光电子学
材料科学
凝聚态物理
有机化学
生态学
物理
计算机科学
生物
机器学习
作者
Li Na Quan,Mingjian Yuan,Riccardo Comin,Oleksandr Voznyy,Eric M. Beauregard,Sjoerd Hoogland,Andrei Buin,Ahmad R. Kirmani,Kui Zhao,Aram Amassian,Dong Ha Kim,Edward H. Sargent
摘要
Metal halide perovskites have rapidly advanced thin-film photovoltaic performance; as a result, the materials' observed instabilities urgently require a solution. Using density functional theory (DFT), we show that a low energy of formation, exacerbated in the presence of humidity, explains the propensity of perovskites to decompose back into their precursors. We find, also using DFT, that intercalation of phenylethylammonium between perovskite layers introduces quantitatively appreciable van der Waals interactions. These drive an increased formation energy and should therefore improve material stability. Here we report reduced-dimensionality (quasi-2D) perovskite films that exhibit improved stability while retaining the high performance of conventional three-dimensional perovskites. Continuous tuning of the dimensionality, as assessed using photophysical studies, is achieved by the choice of stoichiometry in materials synthesis. We achieve the first certified hysteresis-free solar power conversion in a planar perovskite solar cell, obtaining a 15.3% certified PCE, and observe greatly improved performance longevity.
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