期刊文献+

硫化锌电致发光材料在智能可穿戴领域研究进展 被引量:2

Progress of Zinc Sulfide Electroluminescent Materials in Intelligent Wearable Field
下载PDF
导出
摘要 近年来,伴随着柔性电子产业的快速发展,发光显示作为可穿戴集成器件中必不可少的组成部分,人们对其提出了柔性、可拉伸性、自愈合性等额外的需求。基于硫化锌材料的电致发光器件由于发光寿命长、发光组件结构简单等优点,在智能可穿戴领域得到了广泛的研究和关注。本文对硫化锌电致发光材料在智能可穿戴领域的研究进展进行梳理和总结,主要介绍了硫化锌电致发光材料的发光机理、研究热点及未来应用,以期对智能可穿戴领域起到有益的启示和指导作用。 In recent years,with the rapid development of flexible electronics industry,as an indispensable part of wearable integrated devices,light-emitting display has been put forward additional requirements such as flexibility,stretchability and self-healing.Electroluminescent devices based on zinc sulfide materials have received extensive research and attention in the field of intelligent wearables due to their advantages of long life and simple structure of luminescent components.In this paper,the research progress of zinc sulfide electroluminescent materials in the field of smart wearables is summarized,and the luminescence mechanism,research hotspots and future applications of zinc sulfide electroluminescent materials are mainly introduced,in order to play a beneficial enlightenment and guidance role in the field of smart wearables.
作者 郭素文 杨伟峰 胡云浩 郑岩 周金水 GUO Su-wen;YANG Wei-feng;HU Yun-hao;ZHENG Yan;ZHOU Jin-shui(Shanghai Dongzhou Industrial Co., Ltd., Shanghai 201619, China;State Key Laboratory for Modification of Chemical Fibers and Polymer Material, Donghua University, Shanghai 201620, China;Shanghai Kerune Phosphor Technology Co., Ltd., Shanghai 201100, China)
出处 《发光学报》 EI CAS CSCD 北大核心 2022年第5期796-806,共11页 Chinese Journal of Luminescence
基金 上海市产业协同创新项目(2021-cyxt1-kj36) 上海市科技型中小企业技术创新资金(1603H1C1800)资助项目。
关键词 电致发光 柔性 可拉伸性 智能可穿戴 electroluminescence flexibility extensibility smart wearables
  • 相关文献

参考文献7

二级参考文献42

  • 1钟国柱.Ⅱ-Ⅵ族化合物薄膜电致发光[J].发光学报,2006,27(1):6-17. 被引量:3
  • 2余庆选,班大雁,张纪发,方容川.高频溅射生长ZnS∶Tb,F薄膜的结构与发光[J].发光学报,1996,17(3):225-229. 被引量:4
  • 3[1]Xu Xiu-lai,Xu Zheng,Xu Xu-rong. [J]. Phys, 1999,28(2) :73-78.
  • 4[2]Zhao Hui,Wang Yong-sheng,Xu Zheng, et al. [J]. Semiconductor Optoelectronics, 1999,20(3): 149-153.
  • 5[3]Wauters D,Poelman D,Van Meirhaeghe R L, et al. [J]. Journal of Crystal Growth, 1999,204 : 97-107.
  • 6[4]Ohmi K, Fujimoto K, Tanaka S,et al. [J]. J Appl Phys,1995,78(1) :428-434.
  • 7[5]Morishita T, Matsuyama H, Matsui M,et al. [J]. Applied SurfaceScience, 2000,157: 61-66.
  • 8[6]Bénalloul P,Barthou C,Benoit J. [J]. Journal of Alloys and Com-pounds, 1998,257-277 : 709-715.
  • 9[7]Sun S S. [J]. Displays,1999,19:145-149.
  • 10[8]Boudghene Stambouli A, Hamzaoui S, Bouderbala M, et al. [J].Applied Energy, 1999,64: 207-213.

共引文献29

同被引文献8

引证文献2

二级引证文献3

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部