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Time-resolved Electroluminescence of Charge Carrier Dynamics in Multiple-emitting-layer White QLEDs with Polyethyleneimine Interlayers
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作者 YAN Shanshan WANG Shen +2 位作者 LIANG Wencheng LIU Weiwei KONG Youchao 《发光学报》 北大核心 2025年第10期1851-1861,共11页
The charge carrier transport and recombination dynamics in the quantum dots-based light-emitting diodes(QLEDs)featuring multiple emitting layers(M-EMLs)has a great impact on the device performance.In this work,QLEDs b... The charge carrier transport and recombination dynamics in the quantum dots-based light-emitting diodes(QLEDs)featuring multiple emitting layers(M-EMLs)has a great impact on the device performance.In this work,QLEDs based on M-EMLs separated by polyethyleneimine ethoxylated(PEIE)layer with different stacking sequences of blue(B),green(G),and red(R)QDs layer were used to intuitively explore the injection,transportation and recombination processes of the charge carriers in QLEDs by using the time-resolved electroluminescence(TrEL)spectra.From the TrEL spectra mea-surements,green and red emissions were obtained first in the QLEDs with the EMLs sequences of G/PEIE/B/PEIE/R and B/PEIE/R/PEIE/G along the direction of light emission,respectively.While the QLEDs adopt EMLs sequences of B/PEIE/G/PEIE/R,the blue,green and red emissions were obtained nearly at the same time.The above phenomenon can be attributed to different charge carrier transmission and radiation recombination process in the EMLs due to different valence band offsets and conduction band offsets between R-,G-and B-QDs by using different sequences of EMLs.White emission with coordi-nates of(0.31,0.31)and correlated color temperature(CCT)of 5916 K was obtained in the QLEDs with the EMLs se-quences of B/PEIE/G/PEIE/R,which can be attributed to the relative uniform emission of B-,G-and R-QDs due to the effec-tive injection and radiation recombination of charge carriers in each of the EMLs.The above results have great significance for further understanding and improving the performance of QLEDs with M-EMLs. 展开更多
关键词 white QLEDs multiple emitting layers TrEL spectra charge carrier dynamics
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二维Ti2C与Ti3C2表面OH、O、F、Au的吸附活性 被引量:7
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作者 杨建辉 张绍政 +1 位作者 计嘉琳 韦世豪 《物理化学学报》 SCIE CAS CSCD 北大核心 2015年第2期369-376,共8页
较高的比表面积与稳定性使得二维Ti_2C与Ti_3C_2结构在贵金属催化剂载体、锂离子电池、储氢材料等领域具有重要的应用前景.研究Ti_2C、Ti_3C_2的表面吸附活性有助于认识其表面特征.第一性原理计算研究显示:Ti_2C与Ti_3C_2对O、OH、F具... 较高的比表面积与稳定性使得二维Ti_2C与Ti_3C_2结构在贵金属催化剂载体、锂离子电池、储氢材料等领域具有重要的应用前景.研究Ti_2C、Ti_3C_2的表面吸附活性有助于认识其表面特征.第一性原理计算研究显示:Ti_2C与Ti_3C_2对O、OH、F具有较强的吸附活性.通过比较Ti2_C、Ti_3C_2、Ti(001)、TiC(001)的表面电子结构,我们发现Ti_2C与Ti_3C_2较强的表面吸附活性来自于表面Ti原子未极化的3d轨道.这使得Ti_2C、Ti_3C_2表面通常覆盖有O、F、OH.吸附了O、OH基团的Ti_2C与Ti_3C_2结构(Ti_2CO_(2-2x)(OH)_(2x)、Ti_3C_2O_(2-2x)(OH)_(2x))对Au原子的吸附能随OH比例的增大而增大. 展开更多
关键词 二维结构 第一性原理:Ti2C 吸附
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