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首页> 外文期刊>Nanoscale >Remarkable long-term stability of nanoconfined metal-halide perovskite crystals against degradation and polymorph transitions
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Remarkable long-term stability of nanoconfined metal-halide perovskite crystals against degradation and polymorph transitions

机译:nanoconfined卓越的长期稳定性金属卤化钙钛矿晶体对退化和变形转换

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Metal-halide perovskites are promising candidates to advance optoelectronic devices but are known to suffer from rapid material degradation. Here we demonstrate that nanoconfinement is an effective strategy for the long-term stabilization of metal-halide perovskite MAPbI(3) crystals against humidity-induced degradation and temperature-induced polymorph transitions. Two-dimensional X-ray diffraction patterns of MAPbI(3) films reveal an unprecedented air-stability of up to 594 days in non-chemically modified, non-passivated MAPbI(3) films deposited on substrates imposing complete 2D confinement on the tens of nanometers length scale. Temperature-dependent X-ray diffraction analysis and optical spectroscopy further reveal the suppression of temperature-dependent phase transitions in nanoconfined MAPbI(3) crystals. Most notably, the high-temperature cubic phase of MAPbI(3), typically stable at temperatures above 327 K, remains present until a temperature of 170 K when the perovskite crystals are nanoconfined within the 100 nm diameter pores of anodized aluminum oxide templates. Photoluminescence mapping confirms that nanoconfined MAPbI(3) crystals exhibit spatial uniformity on the tens of microns length scale, suggesting that nanoconfinement is an effective strategy for the formation of high-quality, stable MAPbI(3) crystals across large areas.
机译:金属卤化钙钛矿是有希望的候选人推进光电设备但是是已知的遭受快速降解的材料。我们证明nanoconfinement是一个长期有效的策略稳定的金属卤化钙钛矿MAPbI (3)针对humidity-induced退化和晶体温度引起变形转换。二维的x射线衍射模式MAPbI(3)电影揭示前所未有在化工厂air-stability 594天修改,non-passivated MAPbI沉积(3)电影在基质实施完成2 d监禁的纳米长度尺度。与温度有关的x射线衍射分析和光学光谱进一步揭示了抑制与温度有关的阶段转换在nanoconfined MAPbI(3)晶体。最明显的是,高温立方阶段MAPbI(3),一般稳定在温度以上327 K,仍然存在,直到温度达到170K nanoconfined钙钛矿晶体时在100 nm直径孔的阳极氧化膜氧化铝模板。映射证实nanoconfined MAPbI (3)晶体展览空间一致性数万微米尺度范围,建议nanoconfinement是一种有效的战略形成高质量、稳定的MAPbI (3)在大面积晶体。

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