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Optical and Electrical Analysis of Annealing Temperature of High-Molecular Weight Hole Transport Layer for Quantum-dot Light-emitting Diodes

机译:量子点发光二极管高分子量空穴传输层退火温度的光电分析

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摘要

In this study, we introduce optimization of the annealing conditions for improvement of hardness and hole transporting properties of high-molecular weight poly [9, 9-dioctylfluorene-co-N-(4-(3-methylpropyl)) diphenylamine] (TFB) film used as a Hole Transport Layer (HTL) of Quantum-dot Light-emitting Diodes (QLEDs). As annealing temperatures were increased from 120 °C to 150 °C or more, no dissolving or intermixing phenomena at the interface between HTL and Quantum-Dot Emission Layer (QDs EML) was observed. However, when the annealing temperatures was increased from 150 °C to 210 °C, the intensity of the absorbance peaks as determined by Fourier Transform Infrared (FT-IR) measurement was found to relatively decrease, and hole transporting properties were found to decrease in the measurement of current density - voltage (CD - V) and capacitance - voltage (C - V) characteristics of Hole Only Devices (HODs) due to thermal damage. At the annealing temperature of 150 °C, the QLEDs device was optimized with TFB films having good hardness and best hole transporting properties for solution processed QLEDs.
机译:在这项研究中,我们介绍了退火条件的优化,以提高高分子量聚[9,9-二辛基芴-co-N-(4-(3-甲基丙基))二苯胺](TFB)的硬度和空穴传输性能。用作量子点发光二极管(QLED)的空穴传输层(HTL)的薄膜。当退火温度从120°C升至150°C或更高时,在HTL和量子点发射层(QDs EML)之间的界面上未观察到溶解或混合现象。但是,当将退火温度从150°C升高到210°C时,通过傅立叶变换红外(FT-IR)测量确定的吸收峰强度相对降低,并且发现空穴传输性能降低。由于热损坏而导致的仅孔器件(HOD)的电流密度-电压(CD-V)和电容-电压(C-V)特性的测量。在150°C的退火温度下,对QLEDs器件进行了优化,采用了TFB薄膜,该薄膜具有良好的硬度和最佳的空穴传输性能,适用于溶液处理的QLED。

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