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喷墨打印量子点电致发光显示关键材料与技术的前世与今生
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作者 刘辰 魏昌庭 +3 位作者 罗鑫 孙智国 徐勃 曾海波 《发光学报》 EI CAS CSCD 北大核心 2024年第9期1410-1430,共21页
胶体半导体量子点因其独特的纳米级传输效应、自发光特性以及与大面积工业印刷工艺兼容的流变学属性而备受学术界和工业界的关注。喷墨打印作为一种新兴技术,有望实现新一代可印刷、大面积、高性能图案化量子点发光二极管(QLED)。然而,... 胶体半导体量子点因其独特的纳米级传输效应、自发光特性以及与大面积工业印刷工艺兼容的流变学属性而备受学术界和工业界的关注。喷墨打印作为一种新兴技术,有望实现新一代可印刷、大面积、高性能图案化量子点发光二极管(QLED)。然而,目前喷墨打印QLED的制备过程存在墨水配方不当造成的界面侵蚀以及成膜后发光效率降低等问题,导致其性能与旋涂器件存在较大差距。本文首先概述了量子点显示技术的基本概念及发展现状,分析了三种喷墨打印技术的分类、原理及其优缺点。然后介绍了含镉、含铅和无铅无镉三类量子点,分析了它们在喷墨打印QLED中的研究进展,接着重点介绍了利用喷墨打印实现高性能QLED的几种典型策略,最后展望了喷墨打印QLED的发展趋势和美好前景。 展开更多
关键词 量子点 喷墨印刷 电致发光二极管 墨水工程 表界面调控
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几种书写墨水的配方和工艺 被引量:1
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作者 任宏图 《文体用品与科技》 2000年第3期16-17,共2页
关键词 书写墨水 配方 工艺 彩色绘画墨水 工程制图墨水
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Halogen-Driven Bandgap Opening in Graphdiyne for Overall Photocatalytic Water Splitting 被引量:1
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作者 Zhonghui Wang Jia Zhao +1 位作者 Qiang Wan Sen Lin 《Chinese Journal of Chemical Physics》 SCIE CAS CSCD 2021年第6期805-813,I0003,I0068-I0078,共21页
In this work,we studied the electronic band structure of the halogen(F,Cl,and Br)functionalized graphdiynes(GDYs)by using hybrid density functional theory.The results revealed that the bandgap energies of modified GDY... In this work,we studied the electronic band structure of the halogen(F,Cl,and Br)functionalized graphdiynes(GDYs)by using hybrid density functional theory.The results revealed that the bandgap energies of modified GDYs increase as the number of halogen atoms increases.It is also found that the position of the valence band maximum(VBM)is influenced by the electronegativity of halogen atoms.The higher the electronegativity,the deeper the VBM of the GDYs modified by the same number of halogen atoms.Importantly,our results revealed that the bandgap of GDY could be effectively tuned by mixing types of halogen atoms.The new generated conduction band and valence band edges are properly aligned with the oxidation and reduction potentials of water.Further thermodynamic analysis confirms that some models with mixing types of halogen atoms exhibit higher performance of overall photocatalytic water splitting than non-mixing models.This work provides useful insights for designing efficient photocatalysts that can be used for overall water splitting. 展开更多
关键词 Graphdiyne Band structure engineering Water splitting PHOTOCATALYSIS Density functional theory
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