通过电沉积在钢基体上的一种环保的铜基超疏水涂层,以减少腐蚀

P. Chauhan, Preeti Kumari, Aditya Kumar
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引用次数: 1

摘要

钢铁几乎无处不在,包括生物医学设备和手术工具,家庭和工业设备,以及运输。然而,钢在与水接触时容易变质,导致生物污染和腐蚀,从而导致耐久性和使用能力的下降。来自大自然的灵感,如荷叶,越来越多的人关注在钢表面制造防水超疏水涂层来解决上述问题。在本研究中,钢表面的超疏水性是通过两步工艺实现的:通过环保和省时的电沉积方法在钢基体上涂上铜,然后将涂有铜的钢浸入长烷基链溶液中。通过测角仪测水接触角,证实了超疏水性的实现。为了证明这种涂层在腐蚀性环境中的应用,在超疏水表面上观察到相当大的减少。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
An environmentally friendly copper-based superhydrophobic coating on steel substrate via electrodeposition to reduce corrosion
Steel is employed almost everywhere, including biomedical devices and surgical tools, domestic and industrial equipment, and transportation. However, steel is prone to deterioration during contact with water which leads to biofouling and corrosion, resulting in degradation in durability and function ability. Inspiration from nature, such as lotus leaves, is getting more attention to fabricating water-repellent superhydrophobic coatings on steel surfaces to solve aforesaid problems. In this present study, superhydrophobicity on steel surfaces was achieved by a two-step process: copper coating on the steel substrate via an environmentally friendly and time-efficient electrodeposition method, followed by immersion of copper-coated steel in long-alkyl chain solution. The wettability was measured through the water contact angle using the goniometer, which confirmed the achievement of superhydrophobicity. To demonstrate the application of this coating in a corrosive environment, a considerable reduction has been observed on the superhydrophobic surface.
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