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Phase segregation due to ion migration in all-inorganic mixed-halide perovskite nanocrystals

机译:全离子混合卤化物钙钛矿纳米晶体中离子迁移引起的相分离

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摘要

Semiconductor mixed-halide perovskites featured with a tunable energy bandgap are ideal candidates for light absorbers in tandem solar cells as well as fluorescent materials in light-emitting diodes and nanoscale lasers. These device advancements are currently hindered by the light-induced phase segregation effect, whereby ion migration would yield smaller-bandgap domains with red-shifted photoluminescence. Here we show that upon laser excitation all-inorganic mixed-halide nanocrystals unexpectedly exhibit a blue shift in the photoluminescence peak that can revert back in the dark, thus depicting the processes of ion migration out of and back to the originally excited nanocrystals. Interestingly, this reversible photoluminescence shift can also be induced by electrical biasing of mixed-halide nanocrystals without the injection of charge carriers. The above findings suggest that it is the local electric field that breaks the ionic bonds in mixed-halide nanocrystals, which could be a universal origin for light-induced phase segregation observed in other mixed-halide perovskite materials.
机译:具有可调能带隙的半导体混合卤化物钙钛矿是串联太阳能电池中的光吸收剂以及发光二极管和纳米级激光器中的荧光材料的理想候选材料。这些器件的发展目前受到光诱导的相分离效应的阻碍,其中离子迁移将产生带隙较小的带红移光致发光域。在这里,我们显示了在激光激发后,所有无机混合卤化物纳米晶体意外地在光致发光峰中显示出蓝移,该蓝移可以在黑暗中恢复原状,从而描述了离子迁移出原始激发的纳米晶体的过程。有趣的是,这种可逆的光致发光位移也可以通过混合卤化物纳米晶体的电偏压而引起,而无需注入载流子。上述发现表明,是局部电场破坏了混合卤化物纳米晶体中的离子键,这可能是在其他混合卤化物钙钛矿材料中观察到的光致相分离的普遍起源。

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