Modus Operandi of Protective and Anti-icing Mechanisms Underlying the Design of Longstanding Outdoor Icephobic Coatings

被引:182
作者
Boinovich, Ludmila B. [1 ]
Emelyanenko, Alexandre M. [1 ]
Emelyanenko, Kirill A. [1 ]
Modin, Evgeny B. [2 ]
机构
[1] Russian Acad Sci, AN Frumkin Inst Phys Chem & Elect, Moscow 119071, Russia
[2] CIC NanoGUNE, Donostia San Sebastian 20018, Spain
基金
俄罗斯科学基金会;
关键词
robust superhydrophobicity; nanotextured surfaces; nanosecond laser treatment; durability; wear resistance; aluminum alloy; atmospheric icing; SUPERHYDROPHOBIC SURFACES; CONDENSATION; WETTABILITY; WATER; ICE; PERFORMANCE; STABILITY; CONTACT; ROBUST;
D O I
10.1021/acsnano.8b09549
中图分类号
O6 [化学];
学科分类号
0703 ;
摘要
Atmospheric icing has become a global concern due to hazardous consequences of ice accretion on air, land, and sea transport and infrastructure. Icephobic surfaces due to their physicochemical properties facilitate a decrease in ice and snow accumulation under outdoor conditions. However, a serious problem of most super hydrophobic surfaces described in the literature is poor operational durability under harsh corrosive and abrasive loads characteristic of atmospheric operation. Here, we elucidate main surface phenomena determining the anti icing behavior and show experimentally how different mechanisms contribute to long-term durability. For comprehensive exploitation of those mechanisms, we have applied a recently proposed strategy based on fine-tuning of both laser processing and protocols of deposition of the fluorooxysilanes onto the nanotextured surface. Prolonged outdoor tests evidence that a developed strategy for modification of materials on the nanolevel allows overcoming the main drawbacks of icephobic coatings reported so far and results in resistance to destroying atmospheric impacts.
引用
收藏
页码:4335 / 4346
页数:12
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