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Voltage-Dependent Multicolor Electroluminescent Device Based on Halide Perovskite and Chalcogenide Quantum-Dots Emitters

机译:基于卤化物钙钛矿和硫族化物量子点发射器的电压相关多色电致发光器件

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摘要

Electroluminescent devices based on metal halide perovskites have attracted extensive attention owing to their high external quantum efficiency, excellent color purity, and inexpensive solution process. So far, extensive efforts have been made to improve the efficiency of the monochromatic perovskite light-emitting diodes (LEDs). However, multicolor perovskite-based LEDs are seldom studied. Here, an individual device capable of multicolor emission in response to the passage of external electric bias is demonstrated. With the rational design of the energy band alignment and control of the carrier transport property, color-tunable electroluminescent devices based on inorganic halide perovskite and chalcogenide quantum-dots are fabricated with a wide color tuning range, high color reversibility, and ultrafast color switching. The mechanism of chromaticity tuning is investigated and is explained by the shift of the exciton recombination zone with the driving voltage. The presented work will impact scientific communities by encouraging the manufacture of cost-effective, high-resolution, and full-color displays and human-centric lighting.
机译:基于金属卤化物钙钛矿的电致发光器件由于其高的外部量子效率,出色的色纯度和廉价的溶液工艺而备受关注。迄今为止,已经进行了广泛的努力以提高单色钙钛矿发光二极管(LED)的效率。但是,很少研究基于钙钛矿的多色LED。这里,说明了能够响应于外部电偏压的通过而发出多色光的单个装置。通过合理的能带对准设计和载流子传输特性的控制,制造了基于无机卤化物钙钛矿和硫属元素化物量子点的可调谐电致发光器件,该器件具有宽泛的颜色调整范围,高颜色可逆性和超快的颜色切换能力。研究了色度调谐的机理,并通过激子复合区随驱动电压的变化进行了解释。提出的工作将通过鼓励制造具有成本效益的,高分辨率的全彩色显示器和以人为本的照明设备,来影响科学界。

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