首页> 外文期刊>Nano letters >Transparent Metasurfaces Counteracting Fogging by Harnessing Sunlight
【24h】

Transparent Metasurfaces Counteracting Fogging by Harnessing Sunlight

机译:通过利用阳光来抵消雾化的透明元件

获取原文
获取原文并翻译 | 示例
           

摘要

Surface fogging is a common phenomenon that can have significant and detrimental effects on surface transparency and visibility. It affects the performance in a wide range of applications including windows, windshields, electronic displays, cameras, mirrors, and eyewear. A host of ongoing research is aimed at combating this problem by understanding and developing stable and effective antifogging coatings that are capable of handling a wide range of environmental challenges "passively" without consumption of electrical energy. Here we introduce an alternative approach employing sunlight to go beyond state-of-the-art techniques, such as superhydrophilic and superhydrophobic coatings, by rationally engineering solar absorbing metasurfaces that maintain transparency, while upon illumination induce localized heating to significantly delay the onset of surface fogging or decrease defogging time. For the same environmental conditions, we demonstrate that our metasurfaces are able to reduce defogging time by up to 4-fold and under supersaturated conditions inhibit the nucleation of condensate outperforming conventional state-of-the-art approaches in terms of visibility retention. Our research illustrates a durable and environmentally sustainable approach to passive antifogging and defogging for transparent surfaces. This work opens up the opportunity for large-scale manufacturing that can be applied to a range of materials, including polymers and other flexible substrates.
机译:表面雾化是一种常见现象,可对表面透明度和可见性具有显着和不利影响。它会影响各种应用中的性能,包括窗户,挡风玻璃,电子显示器,摄像机,镜子和眼镜。一系列持续的研究旨在通过理解和开发能够在没有电能的情况下“被动地”处理广泛的环境挑战的稳定和有效的抗雾涂层来解决这种问题。在这里,我们介绍一种替代方法,采用阳光来超越最先进的技术,例如超硫酸化和超疏水涂料,通过合理的工程太阳能吸收维持透明度,而在照明时诱导局部加热,以显着延迟表面发作雾化或减少缺陷时间。对于相同的环境条件,我们证明了我们的弥补时间能够将缺失时间降低到4倍,在过饱和条件下,抑制在可视性保留方面抑制冷凝物的成核,优于常规的最新方法。我们的研究说明了对透明表面的被动抗雾和脱模的耐用和环境可持续的方法。这项工作开辟了大规模制造的机会,可以应用于一系列材料,包括聚合物和其他柔性基材。

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