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基于受限CHNHPbBr纳米晶体的高效且环境稳定的柔性颜色转换器

Highly Efficient and Environmentally Stable Flexible Color Converters Based on Confined CHNHPbBr Nanocrystals.

作者信息

Rubino Andrea, Anaya Miguel, Galisteo-López Juan F, Rojas T Cristina, Calvo Mauricio E, Míguez Hernán

机构信息

Institute of Materials Science of Seville , Spanish National Research Council-University of Seville , C/Américo Vespucio 49 , 41092 Seville , Spain.

出版信息

ACS Appl Mater Interfaces. 2018 Nov 7;10(44):38334-38340. doi: 10.1021/acsami.8b11706. Epub 2018 Oct 29.

Abstract

In this work, we demonstrate a synthetic route to attain methylammonium lead bromide (CHNHPbBr) perovskite nanocrystals (nc-MAPbBr, 1.5 nm < size < 3 nm) and provide them with functionality as highly efficient flexible, transparent, environmentally stable, and adaptable color-converting films. We use nanoparticle metal oxide (MOx) thin films as porous scaffolds of controlled nanopores size distribution to synthesize nc-MAPbBr through the infiltration of perovskite liquid precursors. We find that the control over the reaction volume imposed by the nanoporous scaffold gives rise to a strict control of the nanocrystal size, which allows us to observe well-defined quantum confinement effects on the photo-emission, being the luminescence maximum tunable with precision between λ = 530 nm (green) and λ = 490 nm (blue). This hybrid nc-MAPbBr/MOx structure presents high mechanical stability and permits subsequent infiltration with an elastomer to achieve a self-standing flexible film, which not only maintains the photo-emission efficiency of the nc-MAPbBr unaltered but also prevents their environmental degradation. Applications as adaptable color-converting layers for light-emitting devices are envisaged and demonstrated.

摘要

在这项工作中,我们展示了一种合成路线,以获得甲基溴化铅(CH₃NH₃PbBr₃)钙钛矿纳米晶体(nc-MAPbBr,1.5纳米<尺寸<3纳米),并赋予它们作为高效柔性、透明、环境稳定且适应性强的颜色转换薄膜的功能。我们使用纳米颗粒金属氧化物(MOₓ)薄膜作为具有可控纳米孔尺寸分布的多孔支架,通过钙钛矿液体前驱体的渗透来合成nc-MAPbBr₃。我们发现,由纳米多孔支架施加的对反应体积的控制导致对纳米晶体尺寸的严格控制,这使我们能够观察到对光发射有明确的量子限制效应,其发光最大值可在λ = 530纳米(绿色)和λ = 490纳米(蓝色)之间精确调谐。这种nc-MAPbBr₃/MOₓ混合结构具有高机械稳定性,并允许随后用弹性体渗透以获得自立式柔性薄膜,该薄膜不仅保持nc-MAPbBr₃的光发射效率不变,还防止其环境降解。设想并展示了其作为发光器件的适应性颜色转换层的应用。

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