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Bifacial passivation towards efficient FAPbBr(3)-based inverted perovskite light-emitting diodes

机译:有两面的钝化对有效FAPbBr(3)的反向钙钛矿发光二极管

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A unique technique to passivate both bottom and top sides of perovskite has been successfully developed to achieve highly efficient inverted perovskite light-emitting diodes (PeLEDs). For the bottom passivation, an organic/inorganic hybrid electron transporting layer (ETL) replaces the widely adopted inorganic ETL to overcome the disadvantages of the pure inorganic ETL. The ZPM (ZnO-in-polymer matrix) ETL, which consists of ZnO nanoparticles blended into polyvinylpyrrolidone, not only passivates the surface defects of ZnO nanoparticles, but also improves the morphology and stability of FAPbBr(3)film. For the top passivation, smaller grains and a FAPbBr(3)/PEA(2)PbBr(4)3D/2D hybrid structure are obtained by applying a small amount of PEABr solution. The synergetic interplay of organic/inorganic hybrid ETL and organic halide salt surface modification substantially shrinks the grain size to facilitate radiative recombination, and suppresses non-radiative recombination both at the interface of ETL/perovskite and HTL/perovskite, and in the perovskite layer. As a result, the highly efficient green PeLED sets a new record of device performance for FAPbBr(3)-based inverted PeLEDs, with current efficiency of 39.7 cd A(-1), external quantum efficiency of 9.0%, power efficiency of 46.4 lm W-1, maximum luminance of 6.03 x 10(4)cd m(-2), and half-lifetime of 297 minutes at an initial brightness of similar to 100 cd m(-2).
机译:一个独特的技术使钝化底部和钙钛矿的成功开发实现高效的反向钙钛矿发光二极管(PeLEDs)。有机/无机钝化底部混合电子传输层(ETL)取代广泛采用无机ETL克服纯无机ETL的缺点。ETL (ZnO-in-polymer矩阵),由氧化锌纳米颗粒混合成聚乙烯吡咯烷酮,不仅钝化纳米氧化锌的表面缺陷,但也改进的形态学和稳定性FAPbBr(3)电影。谷物和FAPbBr(3) /豌豆(2)PbBr (4) 3 d / 2 d混合动力车通过应用少量结构了PEABr解决方案。有机/无机杂化ETL和有机卤化物盐表面改性大大缩小促进辐射的晶粒尺寸重组和抑制无辐射复合的界面ETL /钙钛矿和HTL /钙钛矿,钙钛矿层。高效绿色贝利设置一个新记录的设备性能FAPbBr(3)的反向PeLEDs,电流效率为39.7 cd (1),外部量子效率为9.0%,力量46.4 lm w1,效率的最大亮度6.03 x 10 m (2), (4) cd和half-lifetime 297分钟的初始亮度相似100 cd(2)。

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