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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Spin-Assembled Nanolayer of a Hyperbranched Polymer on the Anode in Organic Light-Emitting Diodes: The Mechanism of Hole Injection and Electron Blocking
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Spin-Assembled Nanolayer of a Hyperbranched Polymer on the Anode in Organic Light-Emitting Diodes: The Mechanism of Hole Injection and Electron Blocking

机译:有机发光二极管阳极上超支化聚合物的自旋组装纳米层:空穴注入和电子阻挡的机理

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We introduced a spin-assembled nanolayer of hyperbranched poly(ether sulfone) with sulfonic acid terminal on top of an indium-tin oxide anode in organic light-emitting diodes. This results in great improvement in luminous efficiency, better than that of devices using a commercially available conducting polymer composition as a hole-injection layer. The effect of the nanolayer was investigated by impedance spectroscopy, photovoltaic measurement for built-in-potential, and transient electroluminescence. We concluded that the high luminous efficiency resulted from the efficient electron-blocking by the nanolayer and hole-injection assisted by the accumulation of electrons at the interface. This result implies that, for an efficient hole-injection layer, the electron-blocking capability should be incorporated in addition to the hole-injection and -transport capability.
机译:我们在有机发光二极管的铟锡氧化物阳极上引入了带有磺酸末端的超支化聚醚砜的自组装纳米层。与使用市售的导电聚合物组合物作为空穴注入层的装置相比,这导致发光效率的极大改善。通过阻抗光谱,用于内置电位的光伏测量和瞬态电致发光来研究纳米层的作用。我们得出的结论是,高发光效率归因于纳米层对电子的有效阻挡以及界面处电子的积累辅助的空穴注入。该结果表明,对于有效的空穴注入层,除了空穴注入和传输能力之外,还应当结合电子阻挡能力。

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