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Optimization of Quantum Dot Thin Films using Electrohydrodynamic Jet Spraying for Solution-Processed Quantum Dot Light-Emitting Diodes

机译:用电液动力喷射喷射对溶液加工量子点发光二极管的量子点薄膜优化

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The electrohydrodynamic (EHD) jet spraying process is a good method for making quantum dot (QD) layers in light-emitting diodes (LEDs). However, controlling the morphology and large-scale fabrication of the QD layers are critical for realizing all-solution-processed QD-LEDs with high performance. Three spraying techniques were used with the EHD jet spraying technique: a big circular film method, a spiral-line method, and a straight-line method. These techniques were used to obtain QD films with good uniformity. The straight-line spray showed the most promise to obtain a uniform QD layer with large area, and QD-LEDs made with this method showed better performance with a low turn-on voltage of 3.0?V, a luminance of 7801?cd/msup2/sup, and a maximum current efficiency of 2.93?cd/A.
机译:电液动力学(EHD)喷射喷射过程是在发光二极管(LED)中制造量子点(QD)层的良好方法。然而,控制QD层的形态和大规模制造对于实现具有高性能的全解决方案处理的QD-LED至关重要。三种喷涂技术与EHD喷射喷涂技术一起使用:大圆形薄膜方法,螺旋线法和直线法。这些技术用于获得具有良好均匀性的QD膜。直线喷雾显示最有望获得具有大面积的均匀QD层,并且采用该方法制造的QD-LED显示出具有3.0Ω·v的低通孔电压的更好的性能,亮度为7801?CD / M 2 ,最大电流效率为2.93?cd / a。

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