TY - JOUR
T1 - Bio-inspired self-cleaning surfaces
AU - Liu, Kesong
AU - Jiang, Lei
PY - 2012/8
Y1 - 2012/8
N2 - Self-cleaning surfaces have drawn a lot of interest for both fundamental research and practical applications. This review focuses on the recent progress in mechanism, preparation, and application of self-cleaning surfaces. To date, self-cleaning has been demonstrated by the following four conceptual approaches: (a) TiO2-based superhydrophilic self-cleaning, (b) lotus effect self-cleaning (superhydrophobicity with a small sliding angle), (c) gecko setaeinspired self-cleaning, and (d) underwater organismsinspired antifouling self-cleaning. Although a number of self-cleaning products have been commercialized, the remaining challenges and future outlook of self-cleaning surfaces are also briefly addressed. Through evolution, nature, which has long been a source of inspiration for scientists and engineers, has arrived at what is optimal. We hope this review will stimulate interdisciplinary collaboration among material science, chemistry, biology, physics, nanoscience, engineering, etc., which is essential for the rational design and reproducible construction of bio-inspired multifunctional self-cleaning surfaces in practical applications. ©
AB - Self-cleaning surfaces have drawn a lot of interest for both fundamental research and practical applications. This review focuses on the recent progress in mechanism, preparation, and application of self-cleaning surfaces. To date, self-cleaning has been demonstrated by the following four conceptual approaches: (a) TiO2-based superhydrophilic self-cleaning, (b) lotus effect self-cleaning (superhydrophobicity with a small sliding angle), (c) gecko setaeinspired self-cleaning, and (d) underwater organismsinspired antifouling self-cleaning. Although a number of self-cleaning products have been commercialized, the remaining challenges and future outlook of self-cleaning surfaces are also briefly addressed. Through evolution, nature, which has long been a source of inspiration for scientists and engineers, has arrived at what is optimal. We hope this review will stimulate interdisciplinary collaboration among material science, chemistry, biology, physics, nanoscience, engineering, etc., which is essential for the rational design and reproducible construction of bio-inspired multifunctional self-cleaning surfaces in practical applications. ©
KW - Anti-icing
KW - Antifogging
KW - Antireflection
KW - Drag reduction
KW - Superhydrophilicity
KW - Superhydrophobicity
UR - https://www.scopus.com/pages/publications/84864257734
U2 - 10.1146/annurev-matsci-070511-155046
DO - 10.1146/annurev-matsci-070511-155046
M3 - 文献综述
AN - SCOPUS:84864257734
SN - 1531-7331
VL - 42
SP - 231
EP - 263
JO - Annual Review of Materials Research
JF - Annual Review of Materials Research
ER -