Artificial liquid repellent surfaces have recently attracted vast scientific attention; however, achieving mechanical robustness remains a formidable challenge before industrialization can be realized. To this end, inspired by plateaus in geological landscapes, a self-compensating strategy is developed to pave the way for the synthesis of durable repellent surfaces. This self-compensating surface comprises tall hydrophobic structural elements, which can repel liquid droplets. When these elements are damaged, they expose shorter structural elements that also suspend the droplets and thus preserve interfacial repellency. An example of this plateau-inspired stratified surface was created by 3D direct laser lithography micro-nano fabrication. E...
Droplets impacting solid surfaces is ubiquitous in nature and of practical importance in numerous in...
The investigations of superhydrophobicity and self-cleaning surfaces have been given a lot of attent...
Life creates some of its most robust, extreme surface materials not from solids but from liquids: a ...
Artificial liquid-repellent surfaces have recently attracted vast scientific attention; however, ach...
Creating a robust synthetic surface that repels various liquids would have broad technological impli...
Biomimetic liquid-repelling surfaces have been the subject of considerable scientific research and t...
Liquid-repellent surfaces, such as superhydrophobic surfaces, superoleophobic surfaces, and slippery...
Artificial liquid-repellent surfaces have attracted substantial scientific and industrial attention ...
Artificial liquid-repellent surfaces have attracted substantial scientific and industrial attention ...
Decorating a surface with a forest of microposts can either make it water repellent or cause the liq...
Nature has developed unique strategies to refine and optimise structural performance. Using surfaces...
Inspired by manifestations in nature, microengineering and nanoengineering of synthetic materials to...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Th...
Living nature, through some 3 billion years of evolution, has developed materials, objects, and proc...
Living nature, through some 3 billion years of evolution, has developed materials, objects, and proc...
Droplets impacting solid surfaces is ubiquitous in nature and of practical importance in numerous in...
The investigations of superhydrophobicity and self-cleaning surfaces have been given a lot of attent...
Life creates some of its most robust, extreme surface materials not from solids but from liquids: a ...
Artificial liquid-repellent surfaces have recently attracted vast scientific attention; however, ach...
Creating a robust synthetic surface that repels various liquids would have broad technological impli...
Biomimetic liquid-repelling surfaces have been the subject of considerable scientific research and t...
Liquid-repellent surfaces, such as superhydrophobic surfaces, superoleophobic surfaces, and slippery...
Artificial liquid-repellent surfaces have attracted substantial scientific and industrial attention ...
Artificial liquid-repellent surfaces have attracted substantial scientific and industrial attention ...
Decorating a surface with a forest of microposts can either make it water repellent or cause the liq...
Nature has developed unique strategies to refine and optimise structural performance. Using surfaces...
Inspired by manifestations in nature, microengineering and nanoengineering of synthetic materials to...
Thesis: Ph. D., Massachusetts Institute of Technology, Department of Mechanical Engineering, 2016.Th...
Living nature, through some 3 billion years of evolution, has developed materials, objects, and proc...
Living nature, through some 3 billion years of evolution, has developed materials, objects, and proc...
Droplets impacting solid surfaces is ubiquitous in nature and of practical importance in numerous in...
The investigations of superhydrophobicity and self-cleaning surfaces have been given a lot of attent...
Life creates some of its most robust, extreme surface materials not from solids but from liquids: a ...