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Thermally activated delayed-fluorescence organic light-emitting diodes based on exciplex emitter with high efficiency and low roll-off
Lin, T.; T. Y. Zhang; Q. G. Song; F. M. Jin; Z. Q. Liu; Z. S. Su; Y. S. Luo; B. Chu; C. S. Lee and W. L. Li
2016
发表期刊Organic Electronics
卷号38
摘要An ultraviolet (UV)-durable super-hydrophobic ZnO/Ni lotus-like nanostructure was fabricated via a simple two-step electrodeposition method at low temperature. The as-prepared ZnO/Ni nanostructure showed excellent UV-durable super-hydrophobicity and water ultra repellency. The Ni nanoclusters with different density could be successfully fabricated on the surface of ZnO NR by modulating the electrodeposition time of Ni nanoclusters, which affected surface roughness and wettability. The triple-level roughness resulted from high density Ni nanoclusters played a important role in the super-hydrophobicity of ZnO/Ni nanostructure. This super-hydrophobic surface showed high stability in water for long term. Furthermore, the layer of Ni nanoclusters avoided the photoinduced wettability conversion of ZnO and hence greatly improved the UV-durability of this super-hydrophobic surface, which were essential elements for practical applications. This simple method could be applied to various substrates, such as metal surfaces and other electric conductive substrates. (C) 2016 Elsevier Ltd and Techna Group S.r.l. All rights reserved.
文章类型期刊
收录类别SCI ; EI
语种英语
文献类型期刊论文
条目标识符http://ir.ciomp.ac.cn/handle/181722/57060
专题中科院长春光机所知识产出
推荐引用方式
GB/T 7714
Lin, T.,T. Y. Zhang,Q. G. Song,et al. Thermally activated delayed-fluorescence organic light-emitting diodes based on exciplex emitter with high efficiency and low roll-off[J]. Organic Electronics,2016,38.
APA Lin, T..,T. Y. Zhang.,Q. G. Song.,F. M. Jin.,Z. Q. Liu.,...&C. S. Lee and W. L. Li.(2016).Thermally activated delayed-fluorescence organic light-emitting diodes based on exciplex emitter with high efficiency and low roll-off.Organic Electronics,38.
MLA Lin, T.,et al."Thermally activated delayed-fluorescence organic light-emitting diodes based on exciplex emitter with high efficiency and low roll-off".Organic Electronics 38(2016).
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