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Fabrication Process of Silicone-based Dielectric Elastomer Actuators
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剩余压力平衡可转移封装平台的设计,使用基于尿的聚合物基层,用于可靠的可穿戴电子产品.

Sung-Hun Jo1, Donghwan Kim2, Chaewon Park2

  • 1Division of System Semiconductor, Dongguk University, Seoul 04620, Republic of Korea.

Polymers
|October 16, 2025
PubMed
概括

一个新的压力平衡封装平台增强了超薄可穿戴电子产品的屏障性能. 这项技术提高了对先进的皮肤安装应用的防潮性和设备可靠性.

关键词:
一个ALD纳米分层屏障.OLED 的可靠性在CVD中,iCVD是聚合物超级层的聚合物.剩余压力平衡的剩余压力平衡可以转移的封装封装.

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科学领域:

  • 材料科学 材料科学 材料科学
  • 聚合物科学 聚合物科学
  • 纳米技术 纳米技术

背景情况:

  • 可穿戴电子产品需要强大的封装,以获得屏障性能和机械可靠性.
  • 超薄,可转移的封装对于皮肤安装设备至关重要.

研究的目的:

  • 开发一个可穿戴电子产品的残余应力平衡封装平台.
  • 提高超薄封装的屏障性能和机械稳定性.

主要方法:

  • 使用启动化学蒸汽沉积 (iCVD) 制造基于尿的共聚合物基层[p(IEM-co-HEMA] .
  • 将ALD Al2O3/ZnO纳米分层屏障与SiO2封闭层集成在一起.
  • 湿气蒸汽传递率 (WVTR) 和设备性能 (OLED) 的表征.

主要成果:

  • 应力平衡的设计使屏障的临界厚度翻了一番,达到60nm.
  • 在WVTR显著降低到3.75 × 10^-5 g/m^2/day.
  • 在转移和皮肤变形后,OLED 保持了性能和稳定性.

结论:

  • 开发的封装平台为耐用可穿戴光电子提供了实用解决方案.
  • 压力平衡策略是实现超薄膜高屏障性能的关键.
  • 这项工作为下一代可靠的皮肤安装电子设备铺平了道路.