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Effect of small molecule additives on efficient operation of all inorganic polycrystalline perovskite light-emitting diodes

机译:小分子添加剂对所有无机多晶钙钛矿发光二极管有效运作的影响

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Perovskite light-emitting diodes (PeLEDs) have received increasing attention because of their unique saturated emission color and solution fabrication capability. In this work, we report our effort towards obtaining high performance cesium lead tribromide (CsPbBr3)-based PeLEDs through controlled growth of the inorganic polycrystalline perovskite emissive layer. The effect of a small molecule additive 2-((4-biphenylyl)-5-phenyl-1,3,4-oxadiazole) (PBD) on the formation of the uniform pinhole free one-step-processed CsPbBr3-based emissive layer was analyzed. The results reveal that the use of the PBD additive in the precursor solution enables the suppression of the leakage current in the PeLEDs, which is realized through improved charge transport and controlled growth of the CsPbBr3-emissive layer. A maximum luminance of 9396 cd m(-2) was realized for the PeLEDs, prepared using an optimal PBD additive concentration in the perovskite precursor solution, which is >4 times that of the control PeLEDs fabricated using a pure CsPbBr3-precursor solution (2455 cd m(-2)).
机译:由于其独特的饱和发射颜色和溶液制造能力,佩洛克斯发光二极管(PELEDS)受到了越来越长的关注。在这项工作中,我们通过对无机多晶钙钛矿发光层的控制生长来促进获得高性能铯铅纤维素(CSPBBR3)的高性能铯铅纤维素(CSPBBR3)。小分子添加剂2 - ((4-联合烯丙基)-5-苯基-1,3,4-恶二唑)(PBD)对形成均匀针孔的无一步处理的CSPBBR3的发光层的影响分析。结果表明,在前体溶液中使用PBD添加剂使得能够抑制封面中的漏电流,通过改善电荷传输和CSPBBR3发光层的控制生长来实现。用钙钛矿前体溶液中的最佳PBD添加剂浓度实现了9396cdm(-2)的最大亮度,所述钙钛矿前体溶液中的浓度为> 4倍使用纯CSPBBR3-前体溶液制造的对照盆(2455 CD m(-2))。

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