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首页> 外文期刊>Nano letters >Nanorod Suprastructures from a Ternary Graphene Oxide-Polymer-CsPbX3 Perovskite Nanocrystal Composite That Display High Environmental Stability
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Nanorod Suprastructures from a Ternary Graphene Oxide-Polymer-CsPbX3 Perovskite Nanocrystal Composite That Display High Environmental Stability

机译:来自三元石墨烯氧化物 - 聚合物-CSPBX3钙钛矿纳米晶体复合材料的纳米棒上伪装,显示出高环境稳定性

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摘要

Despite the exceptional optoelectronic characteristics of the emergent perovskite nanocrystals, the ionic nature greatly limits their stability, and thus restricts their potential applications. Here we have adapted a self-assembly strategy to access a rarely reported nanorod suprastructure that provide excellent encapsulation of perovskite nanocrystals by polymer-grafted graphene oxide layers. Polyacrylic acid-grafted graphene oxide (GO-g-PAA) was used as a surface ligand during the synthesis of the CsPbX(3 )perovskite nanocrystals (NCs), yielding particles (5-12 nm) with tunable halide compositions that were homogeneously embedded in the GO-g-PAA matrix. The resulting NC-GO-g-PAA exhibits a higher photoluminescence quantum yield than previously reported encapsulated NCs while maintaining an easily tunable bandgap, allowing for emission spanning the visible spectrum. The NC-GO-g-PAA hybrid further self-assembles into well-defined nanorods upon solvent treatment. The resulting nanorod morphology imparts extraordinary chemical stability toward protic solvents such as methanol and water and much enhanced thermal stability. The introduction of barrier layers by embedding the perovskite NCs in the GO-g-PAA matrix, together with its unique assembly into nanorods, provides a novel strategy to afford robust perovskite emissive materials with environmental stability that may meet or exceed the requirement for optoelectronic applications.
机译:尽管出射钙钛矿纳米晶体的特殊光电特性,离子性质大大限制了它们的稳定性,并因此限制了它们的应用潜力。在这里,我们已经适应自组装策略来访问鲜有报道纳米棒外壳构造,通过聚合物接枝的氧化石墨烯层提供钙钛矿纳米晶体的优良封装。聚丙烯酸接枝的氧化石墨烯(GO-G-PAA)用作CsPbX(3)的钙钛矿纳米晶体(NCS)的合成过程中的表面配体,产生与该均匀嵌入可调卤化物组合物的颗粒(5-12纳米)在GO-G-PAA矩阵。将得到的NC-GO-G-PAA表现出比以前报道的NC封装,同时保持容易的可调谐的带隙,从而允许发射跨越可见光谱中的光致发光更高量子产率。的NC-GO-G-PAA混合进一步自组装成在溶剂处理明确定义的纳米棒。将得到的纳米棒的形态赋予朝向质子溶剂,如甲醇和水和大量提高的热稳定性非凡化学稳定性。通过其独特的组装成纳米棒嵌入在GO-G-PAA矩阵钙钛矿NCS,一起引入阻挡层,提供了一种新颖的策略,得到与环境稳定性鲁棒钙钛矿的发光材料,其可以达到或超过用于光电应用的要求。

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