...
首页> 外文期刊>Materials today >Textile-fiber-embedded multiluminescent devices: A new approach to soft display systems
【24h】

Textile-fiber-embedded multiluminescent devices: A new approach to soft display systems

机译:纺织光纤嵌入式多功能设备:软显示系统的新方法

获取原文

摘要

In the recent remarkable advances in soft electronic systems, light-emitting functions play a prominent role. In particular, polymer composite systems with embedded luminescent particles have attracted considerable attention as a luminescent component owing to their flexibility and simple fabrication. However, most flexible composite-based electroluminescent (EL) devices have coplanar structures, requiring mechanically compliant electrodes with high transmittance, durability, and stable electrical conductivity. This is a limitation for systems designed for providing superior flexible characteristics without loss of luminescence. Here, we introduce a novel EL device architecture—a durable/flexible textile-fiber-embedded polydimethylsiloxane and zinc sulfide (PDMS?+?ZnS) composite, driven by an in-plane electric field, which eliminates the requirement for high transmittance. On applying an AC voltage, light is radially emitted from the ZnS particles surrounding the fibers, originating from the radially distributed electric/optical fields; the rolling and stretching flexibilities are maintained during this process. The device also exhibits strong EL intensities in a thick emitting layer—a parameter on which EL and mechanoluminescent (ML) intensities in coplanar structures are dependent. This is because the electric field is applied between in-plane fibers. Using this smart design, simultaneously high EL and ML intensities can be simply achieved by embedding fibers in strong ML-emitting PDMS?+?ZnS. We also present a patterned device controlled by different fiber embedding depths, utilizing the vertical and in-plane electric fields. This application may provide a basis for the development of emerging soft display systems that require high luminescence as well as flexibility in the light-emitting components.
机译:在近期软电子系统的卓越进展中,发光功能发挥着突出的作用。特别地,由于它们的柔韧性和简单的制造而具有嵌入式发光颗粒的聚合物复合系统引起了显着的注意力。然而,大多数柔性复合材料的电致发光(EL)器件具有共面结构,需要具有高透射率,耐久性和稳定的电导率的机械稳定的电极。这是设计用于提供卓越的灵活特性而不会损失发光的系统的限制。这里,我们介绍了一种新的EL器件架构 - 一种耐用/柔性纺织纤维嵌入的聚二甲基硅氧烷和由面内电场驱动的硫化锌(PDMSα+→ZnS)复合材料,其消除了高透射率的要求。在施加AC电压时,光从围绕纤维的ZnS颗粒径向发射,源自径向分布的电气/光学场;在此过程中保持轧制和拉伸灵活性。该器件还在厚的发光层中呈现强的EL强度 - A参数,在该参数上,共面结构中的EL和机械发光(ML)强度取决于。这是因为电场在面内纤维之间施加。使用这种智能设计,同时可以通过在强ML发射PDMS中嵌入纤维来简单地实现高EL和M1强度。我们还利用垂直和面内电场呈现由不同光纤嵌入深度控制的图案化设备。本申请可以为开发出现高发光以及发光部件中的灵活性的新出现的软显示系统提供基础。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号