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Tailored dimensionality to regulate the phase stability of inorganic cesium lead iodide perovskites

机译:定制维度调节阶段无机碘化铅铯的稳定钙钛矿

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摘要

Inorganic CsPbI3 perovskites have shown promising potential for achieving all-inorganic photovoltaic (PV) devices. However, the black perovskite polymorph (alpha-phase) of CsPbI3 easily converts into yellow colour (delta-phase) in an ambient environment and it is only stable at high temperature (above 320 degrees C), which limits its practical application. Here we tailor the three-dimensional CsPbI3 perovskite into quasi-two-dimension through adding a large radius cation phenylethylammonium (PEA(+)). The incorporation of PEA(+) into the CsPbI3 perovskite significantly improves the film morphology as well as the phase stability. An optimal Cs(x)PEA(1-x)PbI(3) perovskite film remains stable in the alpha-phase from room temperature to 250 degrees C in air and yields a power conversion efficiency of 5.7% for its solar device. The concept of using large radius cations in the 3D perovskite system provides a new perspective to further enhance the phase stability while retaining the device performance.
机译:无机CsPbI3钙钛矿取得了可喜的实现all-inorganic潜力光伏设备。钙钛矿CsPbI3变形(相)很容易转换成黄色(delta-phase)在周围环境中,只有稳定在高温下(320摄氏度以上)限制了其实际应用。三维CsPbI3钙钛矿quasi-two-dimension通过添加一个大的半径阳离子phenylethylammonium(豌豆(+))。将豌豆CsPbI3 (+)钙钛矿极大地提高了这部电影形态以及稳定阶段。最佳c (x)豌豆(1 - x) PbI(3)钙钛矿的电影相从房间里保持稳定温度250摄氏度在空气和收益率太阳能的功率转换效率5.7%设备。在3 d钙钛矿系统提供了一个新的角度来进一步提高阶段设备性能稳定,同时保留。

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