Spray pyrolysis–deposited NiO film as a hole-injection layer for CsPbBr3 nanocrystal-based light-emitting diodes

材料科学 纳米晶 非阻塞I/O 热分解法 图层(电子) 发光二极管 光电子学 二极管 热解 化学工程 纳米技术 兴奋剂 催化作用 生物化学 工程类 化学
作者
Thi-My-Hanh Nguyen,Phuong-Nam Tran,Quoc-Tuan Le,Quoc-Dat Le,Luong Van Duong,Cao-Ngoc-Hong Nguyen,Thanh‐Tung Duong
出处
期刊:Functional Materials Letters [World Scientific]
卷期号:17 (05) 被引量:1
标识
DOI:10.1142/s1793604724510299
摘要

In perovskite-based light-emitting diodes (LEDs), employing an inorganic material for the hole-injection layer instead of an organic material is crucial for attaining optimal performance and device stability. This layer needs to exhibit [Formula: see text] -type conductivity with high carrier mobility while being fabricated with a simple and industrially compatible method. In this study, uniform and thin [Formula: see text] -type NiO films were deposited through spray pyrolysis in an air atmosphere. The as-deposited film showed poor crystallinity, and high resistance reduced hole-injection performance. Subsequent thermal treatment at 500 ∘ C enhanced the crystallinity of the layer, reducing resistance and improving LED performance. The film exhibited [Formula: see text] -type semiconductor characteristics, and its carrier mobility, carrier concentration and resistivity were 53.0 × [Formula: see text]cm 3 , 116cm 2 ⋅ [Formula: see text] and 0.98[Formula: see text] ⋅ [Formula: see text], respectively. Moreover, a compact [Formula: see text] nanocrystal (NC) film as an emitting layer was deposited with a centrifugal coating technique. The resulting LED component featuring a fluoride-doped tin oxide (FTO)/NiO/[Formula: see text] NCs/tris-(1-phenyl-1H-benzimidazole)/LiF/Au structure and demonstrating high luminance, current efficiency and external quantum efficiency (EQE) reached 12,000 cd⋅[Formula: see text], 8.8 cd ⋅ [Formula: see text] and 3.56%, respectively, at 5.5 V. Our work offers a simple and unique approach for accelerating the development of advanced interfacial materials and circumventing major interfacial problems in solution-processed perovskite NC films for high-performance LEDs.
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