High-Performance Quasi-Two-Dimensional CsPbBr(2.1)Cl(0.9):PEABr Perovskite Sky-Blue LEDs with an Interface Modification Layer

具有界面修饰层的高性能准二维CsPbBr(2.1)Cl(0.9):PEABr钙钛矿天蓝色LED

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Abstract

This paper elucidates the increased luminescence efficiency of CsPbBr(2.1)Cl(0.9) sky-blue perovskite light-emitting diodes (PeLEDs) achieved through the interface modification of 3,4 ethylenedioxythiophene (PEDOT):polystyrene sulfonic acid (PSS)/quasi-two-dimensional (QTD) perovskite using CsCl and CsBr materials, respectively. QTD films were fabricated using ratios of CsPbBr(2.1)Cl(0.9) doped with phenethylamine hydrobromide (PEABr) at 60%, 80%, and 100%. The solvent dimethyl sulfide (C(2)H(6)OS) was employed under the excitation of ambient and 365-nm laser lights. The PeLED structure was composed of Al/LiF/2,2',2"-(1,3,5-benzinetriyl)-tris(1-phenyl-1-H-benzimidazole) (TPBi)/CsPbBr(2.1)Cl(0.9):PEABr/interface modification layer/PEDOT:PSS/ITO glass. The optimized results revealed that the luminance, current efficiency, and external quantum efficiency of the QTD CsPbBr(2.1)Cl(0.9):80% PEABr PeLED with the CsCl interface modification additive was 892 cd/m(2), 3.87 cd/A, and 5.56%, respectively.

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