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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Coupling of surface energy with electric potential makes superhydrophobic surfaces corrosion-resistant
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Coupling of surface energy with electric potential makes superhydrophobic surfaces corrosion-resistant

机译:表面能与电位的耦合使超疏水表面耐腐蚀

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摘要

We study the correlation of wetting properties and corrosion rates on hydrophobized cast iron. Samples of different surface roughnesses (abraded by sandpaper) are studied without coating and with two types of hydrophobic coatings (stearic acid and a liquid repelling spray). The contact angles and contact angle hysteresis are measured using a goniometer while corrosion rates are measured by a potentiodynamic polarization test. The data show a decrease in corrosion current density and an increase in corrosion potential after superhydrophobization. A similar trend is also found in the recent literature data. We conclude that a decrease in the corrosion rate can be attributed to the changing open circuit potential of a coated surface and increased surface area making the non-homogeneous (Cassie-Baxter) state possible. We interpret these results in light of the idea that the inherent surface energy is coupled with the electric potential in accordance with the Lippmann law of electrowetting and Le Chatelier's principle and, therefore, hydrophobization leads to a decrease in the corrosion potential. This approach can be used for novel anti-corrosive coatings.
机译:我们研究了疏水化铸铁的润湿性能与腐蚀速率之间的关系。研究了不同表面粗糙度(被砂纸磨光)的样品,不带涂层,带有两种疏水涂层(硬脂酸和液体排斥喷雾剂)。接触角和接触角磁滞是使用测角仪测量的,而腐蚀速率是通过电位动力学极化测试测量的。数据表明,超疏水化后腐蚀电流密度降低,腐蚀电位升高。在最近的文献数据中也发现了类似的趋势。我们得出结论,腐蚀速率的下降可归因于涂层表面开路电位的变化和表面积的增加,从而使非均质(Cassie-Baxter)状态成为可能。我们根据电润湿的李普曼定律和Le Chatelier原理根据固有表面能与电势耦合的想法来解释这些结果,因此疏水化导致腐蚀电势降低。该方法可用于新型防腐涂料。

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