Superhydrophobic Surfaces Made from Naturally Derived Hydrophobic Materials
Superhydrophobic Surfaces Made from Naturally Derived Hydrophobic Materials
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DOI:
10.1021/acssuschemeng.7b02424
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发表时间:
2017-11
影响因子:
8.4
通讯作者:
S. Razavi;Junho Oh;S. Sett;Lezhou Feng;Xiao Yan;M. J. Hoque;Aihua Liu;R. Haasch;M. Masoomi-
中科院分区:
文献类型:
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作者:
S. Razavi;Junho Oh;S. Sett;Lezhou Feng;Xiao Yan;M. J. Hoque;Aihua Liu;R. Haasch;M. Masoomi-
Functional coatings that can achieve stable superhydrophobicity have the potential to significantly enhance a plethora of industrial applications ranging from building environmental control, phase change heat transfer, thermoelectric power generation, and hydrodynamic drag reduction. In order to create superhydrophobic surfaces, scientists have utilized a variety of surface structuring methods in combination with organosilane based alkyl and perfluorinated synthetic chemical coatings. Unfortunately, organosilane based alkyl and perfluorinated chemicals tend to be toxic, flammable, corrosive, difficult to dispose of, and damaging to the environment. Here, we develop two new methods to achieve superhydrophobicity using liquid phase deposition of cinnamic acid or myristic acid, both organic compounds derived from natural sources. By varying the liquid phase solution concentration, we develop deposition methods on scalable copper oxide microstructured surfaces capable of achieving apparent advancing contact a...