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首页> 外文期刊>Nanoscale >Self-assembly of a robust hydrogen-bonded octylphosphonate network on cesium lead bromide perovskite nanocrystals for light-emitting diodes
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Self-assembly of a robust hydrogen-bonded octylphosphonate network on cesium lead bromide perovskite nanocrystals for light-emitting diodes

机译:健壮的氢键自组装octylphosphonate网络铯溴化钙钛矿纳米晶体的发光二极管

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摘要

We report the self-assembly of an extensive inter-ligand hydrogen-bonding network of octylphosphonates on the surface of cesium lead bromide nanocrystals (CsPbBr3 NCs). The post-synthetic addition of octylphosphonic acid to oleic acid/oleylamine-capped CsPbBr3 NCs promoted the attachment of octylphosphonate to the NC surface, while the remaining oleylammonium ligands maintained the high dispersability of the NCs in non-polar solvent. Through powerful 2D solid-state P-31-H-1 NMR, we demonstrated that an ethyl acetate/acetonitrile purification regime was crucial for initiating the self-assembly of extensive octylphosphonate chains. Octylphosphonate ligands were found to preferentially bind in a monodentate mode through P-O-, leaving polar P?O and P-OH groups free to form inter-ligand hydrogen bonds. The octylphosphonate ligand network strongly passivated the nanocrystal surface, yielding a fully-purified CsPbBr3 NC ink with PLQY of 62%, over 3 times higher than untreated NCs. We translated this to LED devices, achieving maximum external quantum efficiency and luminance of 7.74% and 1022 cd m(-2) with OPA treatment, as opposed to 3.59% and 229 cd m(-2) for untreated CsPbBr3 NCs. This represents one of the highest efficiency LEDs obtained for all-inorganic CsPbBr3 NCs, accomplished through simple, effective passivation and purification processes. The robust binding of octylphosphonates to the perovskite lattice, and specifically their ability to interlink through hydrogen bonding, offers a promising passivation approach which could potentially be beneficial across a breadth of halide perovskite optoelectronic applications.
机译:我们报告一个广泛的自组装inter-ligand氢键网络表面octylphosphonates铯溴化纳米晶体(CsPbBr3 nc)。post-synthetic octylphosphonic酸油酸/ oleylamine-capped CsPbBr3 nc促进了octylphosphonate的附件数控表面,而其余oleylammonium配体的高dispersability维护nc在非极性溶剂中。固态P-31-H-1 NMR,我们证明了一个乙酸乙酯/乙腈净化政权启动的自组装的关键吗广泛octylphosphonate链。Octylphosphonate配体被发现优先绑定在monodentate模式P-O,离开极地P ?inter-ligand氢键形式。octylphosphonate配体网络强烈钝化纳米晶体表面,产生一个fully-purified CsPbBr3数控墨水PLQY为62%,未经处理的nc / 3倍。翻译这个领导的设备,达到最大外部量子效率和亮度的7.74%, 1022 cd(2)与OPA治疗,反对3.59%和229 cd(2)治疗CsPbBr3 nc。发光二极管获得all-inorganic效率CsPbBr3 nc,通过简单,有效的钝化和净化的过程。octylphosphonates的健壮的绑定钙钛矿晶格,特别是他们的通过氢键连接的能力,提供了一个有前途的钝化方法可能是有益的在一个宽度金属卤化物钙钛矿的光电应用程序。

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