...
首页> 外文期刊>ACS nano >Controllable Broadband Optical Transparency and Wettability Switching of Temperature Activated Solid/Liquid-Infused Nanofibrous Membranes
【24h】

Controllable Broadband Optical Transparency and Wettability Switching of Temperature Activated Solid/Liquid-Infused Nanofibrous Membranes

机译:温度激活的固态/液态注入纳米纤维膜的可控宽带光学透明度和润湿性切换

获取原文
获取原文并翻译 | 示例
           

摘要

Inspired by biointerfaces, such as the surfaces of lotus leaves and pitcher plants, researchers have developed innovative strategies for controlling surface wettability and transparency. In particular, great success has been achieved in obtaining low adhesion and high transmittance via the introduction of a liquid layer to form liquid-infused surfaces. Furthermore, smart surfaces that can change their surface properties according to external stimuli have recently attracted substantial interest. As some of the best-performing smart surface materials, slippery liquid-infused porous surfaces (SLIPSs), which are super-repellent, demonstrate the successful achievement of switchable adhesion and tunable transparency that can be controlled by a graded mechanical stimulus. However, despite considerable efforts, producing temperature-responsive, super-repellent surfaces at ambient temperature and pressure remains difficult because of the use of nonreactive lubricant oil as a building block in previously investigated repellent surfaces. Therefore, the present study focused on developing multifunctional materials that dynamically adapt to temperature changes. Here, we demonstrate temperature-activated solidifiable/liquid paraffin-infused porous surfaces (TA-SLIPSs) whose transparency and control of water droplet movement at room temperature can be simultaneously controlled. The solidification of the paraffin changes the surface morphology and the size of the light-transmission inhibitor in the lubricant layer; as a result, the control over the droplet movement and the light transmittance at different temperatures is dependent on the solidifiable/liquid paraffin mixing ratio. Further study of such temperature-responsive, multifunctional systems would be valuable for antifouling applications and the development of surfaces with tunable optical transparency for innovative medical applications, intelligent windows, and other devices.
机译:受生物界面(例如荷叶和水罐的表面)的启发,研究人员开发了控制表面润湿性和透明度的创新策略。特别地,通过引入液体层以形成注入液体的表面,在获得低粘附性和高透射率方面已经获得了巨大的成功。此外,可以根据外部刺激改变其表面性质的智能表面近来引起了人们的极大兴趣。作为一些性能最好的智能表面材料,具有超强防泼性的光滑液体注入多孔表面(SLIPS)展示了成功实现的可切换粘合力和可调透明度的成功实现,可以通过渐变的机械刺激来控制这种情况。然而,尽管付出了很大的努力,但是由于在先前研究的驱虫剂表面中使用非反应性润滑油作为构建基块,因此在环境温度和压力下生产温度敏感的超驱虫剂表面仍然很困难。因此,本研究致力于开发能动态适应温度变化的多功能材料。在这里,我们演示了温度激活的可固化/液体石蜡注入的多孔表面(TA-SLIPSs),其透明性和室温下水滴运动的控制可以同时控制。石蜡的固化改变了润滑剂层中的表面形态和光透射抑制剂的尺寸。结果,在不同温度下对液滴运动和透光率的控制取决于可固化/液体石蜡的混合比。这种对温度敏感的多功能系统的进一步研究对于防污应用以及具有可调节的光学透明性的表面的开发对于创新的医疗应用,智能窗户和其他设备将是有价值的。

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