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High-efficiency quantum dot light-emitting diodes based on Li-doped TiO2 nanoparticles as an alternative electron transport layer

机译:高效的量子点发光二极管基于Li-doped二氧化钛纳米颗粒作为替代电子传输层

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We report high-efficiency quantum dot light-emitting diodes (QLEDs) with Li-doped TiO2 nanoparticles (NPs) as an alternative electron transport layer (ETL). Colloidally stable TiO2 NPs are applied as ETLs of inverted structured QLEDs and the effect of the addition of lithium (Li) to TiO2 NPs on device characteristics is studied in detail. Compared to pristine TiO2 NPs, Li-doped ones are found to be beneficial for the charge balance in the emitting layer of QLEDs mainly by means of their upshifted conduction band minimum, which in turn limits electron injection. A green QLED with 5% Li-doped TiO2 NPs produces a maximum luminance of 169 790 cd m(-2), an EQE of 10.27%, and a current efficiency of 40.97 cd A(-1), which indicate the best device performances to date among QLEDs with non-ZnO inorganic ETLs. These results indicate that Li-doped TiO2 NPs show great promise for use as a solution-based inorganic ETL for future QLEDs.
机译:我们报告高效的量子点发光二极管(QLEDs) Li-doped二氧化钛纳米颗粒(NPs)作为替代电子传输层(ETL)。NPs应用etl的反向结构QLEDs和添加锂的影响(李)二氧化钛NPs设备特征详细研究了。Li-doped的发现是有益的QLEDs发光层的电荷平衡主要通过其加速传导带最小,进而限制了电子注入。生产的最大亮度169 790 cd (2),EQE 10.27%,电流效率40.97 cd(1),这表明最好的设备表演与non-ZnO QLEDs之间的日期无机etl。Li-doped TiO2 NPs显示作为伟大的承诺为未来QLEDs无机ETL为基础的解决方案。

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