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北京市自然科学基金(2122035)

作品数:2 被引量:12H指数:2
发文基金:北京市自然科学基金国家自然科学基金国家重点基础研究发展计划更多>>
相关领域:一般工业技术化学工程更多>>

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Nanoparticles assembly-induced special wettability for bio-inspired materials被引量:3
2013年
Through billions of years of evolution,nature has optimized the programmed assembly of the nano-and micro-scale structures of biological materials.Nanoparticle assembly provides an avenue for mimicking these multiscale functional structures.Bio-inspired surfaces with special wettability have attracted much attention for both fundamental research and practical applications.In this review,we focus on recent progress in nanoparticle assembly-induced special wettability,including superhydrophiiic surfaces,superhydrophobic surfaces,superamphiphobic surfaces,stimuli-responsive surfaces,and selfhealing surfaces.A brief summary and an outlook of the future of this research field are also provided.
Shuai YangXu JinKesong LiuLeijiang
关键词:仿生材料疏水表面
Bio-inspired special wetting surfaces via self-assembly被引量:9
2012年
Self-assembly is the fundamental principle, which can occur spontaneously in nature. Through billions of years of evolution, nature has learned what is optimal. The optimized biological solution provides some inspiration for scientists and engineers. In the past decade, under the multi-disciplinary collaboration, bio-inspired special wetting surfaces have attracted much attention for both fundamental research and practical applications. In this review, we focus on recent research progress in bio-inspired special wetting surfaces via self-assembly, such as low adhesive superhydrophobic surfaces, high adhesive superhydrophobic surfaces, superamphiphobic surfaces, and stimuli-responsive surfaces. The challenges and perspectives of this research field in the future are also briefly addressed.
JIN XuYANG ShuaiLI ZhouLIU KeSongJIANG Lei
关键词:疏水表面
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