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用于高效钙钛矿纳米颗粒发光二极管的电镀银镍核壳纳米线网络电极

Electroplated Silver-Nickel Core-Shell Nanowire Network Electrodes for Highly Efficient Perovskite Nanoparticle Light-Emitting Diodes.

作者信息

Kang Hyungseok, Choi Seok-Ryul, Kim Young-Hoon, Kim Joo Sung, Kim Sungjin, An Byeong-Seon, Yang Cheol-Woong, Myoung Jae-Min, Lee Tae-Woo, Kim Jung-Gu, Cho Jeong Ho

机构信息

Department of Materials Science and Engineering, School of Chemical and Biological Engineering, Research Institute of Advanced Materials, Institute of Engineering Research, Nano Systems Institute (NSI), BK21 PLUS SNU Materials Division for Educating Creative Global Leaders, Seoul National University, Seoul 08826, Republic of Korea.

出版信息

ACS Appl Mater Interfaces. 2020 Sep 2;12(35):39479-39486. doi: 10.1021/acsami.0c10386. Epub 2020 Aug 18.

Abstract

The low sheet resistance and high optical transparency of silver nanowires (AgNWs) make them a promising candidate for use as the flexible transparent electrode of light-emitting diodes (LEDs). In a perovskite LED (PeLED), however, the AgNW electrode can react with the overlying perovskite material by redox reactions, which limit the electroluminescence efficiency of the PeLED by causing the degradation of and generating defect states in the perovskite material. In this study, we prepared Ag-Ni core-shell NW electrodes using the solution-electroplating technique to realize highly efficient PeLEDs based on colloidal formamidinium lead bromide (FAPbBr) nanoparticles (NPs). Solvated Ni ions from the NiSO source were deposited onto the surface of AgNW networks in three steps: (i) cathodic cleaning, (ii) adsorption of the Ni-ion complex onto the AgNW surface, and (iii) uniform electrodeposition of Ni. An ultrathin (∼3.5 nm) Ni layer was uniformly deposited onto the AgNW surface, which exhibited a sheet resistance of 16.7 Ω/sq and an optical transmittance of 90.2%. The Ag-Ni core-shell NWs not only increased the work function of the AgNW electrode, which facilitated hole injection into the emitting layer, but also suppressed the redox reaction between Ag and FAPbBr NPs, which prevented the degradation of the emitting layer and the generation of defect states in it. The resulting PeLEDs based on FAPbBr NPs with the Ag-Ni core-shell NWs showed high current efficiency of 44.01 cd/A, power efficiency of 35.45 lm/W, and external quantum efficiency of 9.67%.

摘要

银纳米线(AgNWs)的低表面电阻和高光学透明度使其成为用作发光二极管(LED)柔性透明电极的有前途的候选材料。然而,在钙钛矿LED(PeLED)中,AgNW电极可通过氧化还原反应与上层的钙钛矿材料发生反应,这会导致钙钛矿材料降解并产生缺陷态,从而限制了PeLED的电致发光效率。在本研究中,我们使用溶液电镀技术制备了Ag-Ni核壳纳米线电极,以实现基于胶体甲脒溴化铅(FAPbBr)纳米颗粒(NPs)的高效PeLED。来自NiSO源的溶剂化Ni离子分三步沉积到AgNW网络表面:(i)阴极清洗,(ii)Ni离子络合物吸附到AgNW表面,以及(iii)Ni的均匀电沉积。在AgNW表面均匀沉积了一层超薄(约3.5 nm)的Ni层,其表面电阻为16.7 Ω/sq,光学透过率为90.2%。Ag-Ni核壳纳米线不仅提高了AgNW电极的功函数,有利于空穴注入发光层,还抑制了Ag与FAPbBr NPs之间的氧化还原反应,防止了发光层的降解及其内部缺陷态的产生。基于带有Ag-Ni核壳纳米线的FAPbBr NPs的所得PeLED显示出44.01 cd/A的高电流效率、35.45 lm/W的功率效率和9.67%的外量子效率。

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