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首页> 外文期刊>Angewandte Chemie >All-Inorganic Perovskite CsSnBr3 as a Thermally Stable, Free-Carrier Semiconductor
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All-Inorganic Perovskite CsSnBr3 as a Thermally Stable, Free-Carrier Semiconductor

机译:全无机Perovskite CSSNBR3作为热稳定的自由载体半导体

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摘要

Hybrid organic-inorganic perovskites, especially methylammonium lead triiodide (MAPbI(3)), are intensely studied for their optoelectronic properties. The organic MA(+) cation is held responsible for the superior performance of MAPbI(3) but also its instability toward moisture and heat. To explore compositions beyond MAPbI(3), we performed experiments and calculations on two isomorphous perovskites CsSnBr3 and MASnBr(3). CsSnBr3 is slightly smaller than MASnBr(3) in cell dimension, but outperforms MASnBr(3) in band gap energy, charge-carrier reduced effective mass, and optical dielectric constant all by approximate to 19%. These merits accumulate to drastically cut the exciton binding energy from 33 meV for MASnBr(3) to 19.6 meV for CsSnBr3, making CsSnBr3 a black, free-carrier semiconductor. CsSnBr3 also exhibits distinctly higher stability toward moisture and heat than its organic counterparts. These advantages suggest ecofriendly applications for CsSnBr3, such as tandem solar cells and direct X-ray detectors.
机译:杂交有机 - 无机钙酸盐,尤其是甲基丙酸铅三碘化物(MAPBI(3)),用于其光电性能。有机MA(+)阳离子负责MAPBI(3)的优异性能,但也对水分和热量的不稳定性。为了探索Mapbi(3)之外的组合,我们对两个同义般的Perovskites CSSNBR3和MASNBR(3)进行了实验和计算。 CSSNBR3略小于细胞尺寸的MASNBR(3),但在带隙能量,电荷载体中占MASNBR(3),减少了有效质量,并且光学介电常数均近似为19%。这些优点累积为从33 mev for masnbr(3)至19.6mev的CSSNBR3,使CSSNBR3为黑色,自由载体半导体的激素将激子结合能。 CSSNBR3还表现出明显更高的水分和热稳定性而不是其有机对应物。这些优点表明了CSSNBR3的Ecofriendly应用,例如串联太阳能电池和直接X射线探测器。

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