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用于钢材的超疏水导电碳纳米管涂层

Superhydrophobic conductive carbon nanotube coatings for steel.

作者信息

Sethi Sunny, Dhinojwala Ali

机构信息

Department of Polymer Science, The University of Akron, Akron, Ohio 44325-3909, USA.

出版信息

Langmuir. 2009 Apr 21;25(8):4311-3. doi: 10.1021/la9001187.

Abstract

We report the synthesis of superhydrophobic coatings for steel using carbon nanotube (CNT)-mesh structures. The CNT coating maintains its structural integrity and superhydrophobicity even after exposure to extreme thermal stresses and has excellent thermal and electrical properties. The coating can also be reinforced by optimally impregnating the CNT-mesh structure with cross-linked polymers without significantly compromising on superhydrophobicity and electrical conductivity. These superhydrophobic conductive coatings on steel, which is an important structural material, open up possibilities for many new applications in the areas of heat transfer, solar panels, transport of fluids, nonwetting and nonfouling surfaces, temperature resilient coatings, composites, water-walking robots, and naval applications.

摘要

我们报道了使用碳纳米管(CNT)网状结构合成用于钢铁的超疏水涂层。即使在承受极端热应力后,CNT涂层仍能保持其结构完整性和超疏水性,并且具有优异的热性能和电性能。通过用交联聚合物对CNT网状结构进行最佳浸渍,还可以增强涂层,而不会显著损害超疏水性和导电性。这些涂覆在作为重要结构材料的钢铁上的超疏水导电涂层,为传热、太阳能板、流体输送、非浸润和防污表面、耐温涂层、复合材料、水上行走机器人以及海军应用等许多新领域开辟了可能性。

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