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首页> 外文期刊>Journal of physical chemistry letters >Reversible Concentration-Dependent Photoluminescence Quenching and Change of Emission Color in CsPbBr3 Nanowires and Nanoplatelets
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Reversible Concentration-Dependent Photoluminescence Quenching and Change of Emission Color in CsPbBr3 Nanowires and Nanoplatelets

机译:CSPBBR3纳米线和纳米孔中的可逆浓度依赖性光致发光淬火和发射颜色的变化

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摘要

We discuss the photoluminescence (PL) of quantum-confined CsPbBr3 colloidal nanocrystals of two different shapes (nanowires and nanoplatelets) at different concentrations in solution and in solid-state films. Upon increasing the nanocrystal concentration in solution, a constant drop in photoluminescence quantum yield is observed, accompanied by a significant PL red shift. This effect is reversible, and the original PL can be restored by diluting to the original concentration. We show that this effect can be in part attributed to self-absorption and partly to aggregation. In particular, for nanoplatelets, where the aggregation is mostly irreversible, while the self-absorption effect is reversible, the two contributions can be well separated. Finally, when dry solid-state films are prepared, the emission band is shifted into the green spectral region, close to the bulk CsPbBr3 band gap, thus preventing blue emission from such films.
机译:我们在溶液中的不同浓度和固态膜中讨论两种不同形状(纳米线和纳米孔)的量子局限性Cspbbr3胶体纳米晶体的光致发光(PL)。 在增加溶液中的纳米晶体浓度后,观察到光致发光量子产率的恒定下降,伴随着显着的PL红色移位。 这种效果是可逆的,并且原始PL可以通过稀释到原始浓度来恢复。 我们表明这种效果可以部分归因于自吸收,部分是聚集。 特别是,对于纳米孔,在聚集大多是不可逆转的情况下,虽然自吸收效果是可逆的,但两种贡献可以很好地分开。 最后,当制备干固态膜时,发射带被移入绿色光谱区域,接近散装CSPBBR3带隙,从而防止这种薄膜的蓝色发射。

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