Nanoprobe Laboratory for Bio- and Nanotechnology and Biomimetics, The Ohio State University , Columbus, OH 43210-1142 , USA.
Philos Trans A Math Phys Eng Sci. 2019 Feb 11;377(2138):20180274. doi: 10.1098/rsta.2018.0274.
Nature has developed materials, objects and processes that function from the macroscale to the nanoscale. The emerging field of biomimetics allows one to mimic biology or nature to develop nanomaterials, nanodevices and processes which provide desirable properties. The biologically inspired materials and structured surfaces are being explored for various commercial applications. These should have minimum human impact on the environment, leading to eco-friendly or green science and technology. There are a large number of flora and fauna including bacteria, plants, land and aquatic animals, and seashells with properties of commercial interest. The paper presents an overview of the general field of biomimetics followed by a detailed overview of mechanisms, fabrication techniques and characterization of superliquiphobic/philic surfaces and their applications. This article is part of the theme issue 'Bioinspired materials and surfaces for green science and technology'.
大自然已经开发出从宏观到微观尺度都能发挥作用的材料、物体和工艺。仿生学这一新兴领域允许人们模仿生物学或自然界来开发纳米材料、纳米器件和工艺,从而提供理想的性能。受生物启发的材料和结构化表面正在被探索用于各种商业应用。这些应用应该对环境的影响最小,从而实现环保或绿色科学技术。有大量具有商业价值的动植物,包括细菌、植物、陆地和水生动物以及贝壳。本文概述了仿生学的一般领域,然后详细概述了超亲/疏液表面的机制、制造技术和特性及其应用。本文是“绿色科学技术的仿生材料和表面”主题专刊的一部分。