...
首页> 外文期刊>ACS applied materials & interfaces >Self-similar Hierarchical Wrinkles as a Potential Multifunctional Smart Window with Simultaneously Tunable Transparency, Structural Color, and Droplet Transport
【24h】

Self-similar Hierarchical Wrinkles as a Potential Multifunctional Smart Window with Simultaneously Tunable Transparency, Structural Color, and Droplet Transport

机译:自相似的等级皱纹作为具有同时可调透明度,结构颜色和液滴传输的潜在多功能智能窗口

获取原文
获取原文并翻译 | 示例
           

摘要

Smart window has immense potential for energy savings in architectural and vehicular applications, while most studies focus on the tunability of a single property of optical transmittance. Here we explore harnessing dynamically tunable hierarchical wrinkles for design of a potential multifunctional smart window with combined structural color and water droplet transport control. The self-similar hierarchical wrinkles with both nanoscale and microscale features are generated on a prestrained poly(dimethylsiloxane) elastomer through sequential strain release and multistep oxygen plasma treatment. We show that the hierarchically wrinkled elastomer displays both opaqueness and iridescent structural color. We find that restretching/releasing the elastomer leads to the reversible and repeatable switch from opaqueness to transparency, arising from the flattening of large wrinkles (micrometer scale), while a nonvanishing structural color occurs due to the nondisappearing small wrinkles (nanoscale). The unique features of combined reversible large wrinkles and irreversible small wrinkles during hierarchical wrinkling are well reproduced by corresponding finite element simulation. The criteria for generating self-similar hierarchical wrinkles is revealed through a simplified theoretical model and validated by experiments. In addition to its tunable optical property, we further show its ability in control of water droplet transport on demand through mechanical stretching and release. We find that an initially pinned water droplet on the tilted hierarchically wrinkled surface starts to slide when the surface is stretched, and becomes pinned again upon strain release. Such a process is reversible and repeatable. The hierarchically wrinkled surface could find broad potential applications not only in multifunctional smart windows with additional features of aesthetics and water collection, but in microfluidics, design of slippery surfaces, and directional water transportation.
机译:智能窗口具有巨大的节能潜力,在建筑和车辆应用中节省,而大多数研究专注于光学透射率的单一性能的可调性。在这里,我们探索使用组合结构颜色和水滴传输控制的潜在多功能智能窗口设计的动态可调等级皱纹。通过连续的应变释放和多步氧等离子体处理在普勒雷聚(二甲基硅氧烷)弹性体上产生具有纳米级和微观特征的自相似的分层皱纹。我们表明,等级皱纹的弹性体显示了不透明和呈虹彩结构颜色。我们发现限制/释放弹性体导致可逆和可重复的切换从大皱纹(微米刻度)的扁平浮现产生的不透明和可重复的开关,而由于不良皱纹(纳米级),发生了非衰弱的结构颜色。通过相应的有限元模拟,在等级皱纹期间组合可逆大皱纹和不可逆的小皱纹的独特特征。通过简化的理论模型揭示产生自相似分层皱纹的标准,并通过实验验证。除了可调光学性质外,我们还通过机械拉伸和释放,进一步展示了控制水滴运输的能力。我们发现,当表面拉伸时,倾斜的等级皱纹表面上最初固定的水滴开始滑动,并在应变释放时再次固定。这种过程是可逆和可重复的。等级皱纹的表面可以在多功能智能窗口中找到广泛的潜在应用,具有美学和水收集的其他特征,但在微流体,光滑表面设计和定向水的设计中。

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