Department of Materials Science and Engineering, Northwestern University, 2220 Campus Drive, Evanston, IL, 60208, USA.
Department of Chemistry, Northwestern University, 2145 Sheridan Road, Evanston, IL, 60208, USA.
Angew Chem Int Ed Engl. 2017 Jun 1;56(23):6523-6527. doi: 10.1002/anie.201701968. Epub 2017 Apr 28.
Soft skin layers on elastomeric substrates are demonstrated to support mechano-responsive wrinkle patterns that do not exhibit cracking under applied strain. Soft fluoropolymer skin layers on pre-strained poly(dimethylsiloxane) slabs achieved crack-free surface wrinkling at high strain regimes not possible by using conventional stiff skin layers. A side-by-side comparison between the soft and hard skin layers after multiple cycles of stretching and releasing revealed that the soft skin layer enabled dynamic control over wrinkle topography without cracks or delamination. We systematically characterized the evolution of wrinkle wavelength, amplitude, and orientation as a function of tensile strain to resolve the crack-free structural transformation. We demonstrated that wrinkled surfaces can guide water spreading along wrinkle orientation, and hence switchable, anisotropic wetting was realized.
弹性基底上的柔软皮层被证明可以支持机械响应的皱纹模式,在施加应变时不会出现裂纹。在高应变状态下,预先拉伸的聚二甲基硅氧烷薄片上的软氟聚合物皮层可以实现无裂纹的表面皱纹,而使用传统的硬皮层则不可能。在多次拉伸和释放循环后,软皮层和硬皮层的并排比较表明,软皮层可以在不产生裂纹或分层的情况下,对皱纹形貌进行动态控制。我们系统地研究了皱纹波长、振幅和方向随拉伸应变的变化,以解决无裂纹结构转变的问题。我们证明了皱纹表面可以引导水沿着皱纹方向扩散,从而实现了可切换的各向异性润湿。