首页> 外文期刊>Journal of nanoscience and nanotechnology >Toward Easily Enlarged Superhydrophobic Copper Surfaces with Enhanced Corrosion Resistance, Excellent Self-Cleaning and Anti-Icing Performance by a Facile Method
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Toward Easily Enlarged Superhydrophobic Copper Surfaces with Enhanced Corrosion Resistance, Excellent Self-Cleaning and Anti-Icing Performance by a Facile Method

机译:通过增强的耐腐蚀性,易腐蚀性,优异的自清洁和防糖化性能,易于扩大的超疏水铜表面

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摘要

This work reports a facile method for fabricating superhydrophobic surface on copper plate by AgNO3 treatment and dodecyl mercaptan modification. The as-prepared superhydrophobic copper plate presents hierarchical and rough morphology composed of nanosheets and nanoparticleformed matrix. Meanwhile, long alkyl chains are assembled onto the rough surface successfully. Consequently, the copper plate is endowed with excellent superhydrophobic performance with a water contact angle of 156.8 degrees and a rolling angle of ca. 3 degrees. Moreover, the superhydrophobicity has long-term durability and excellent stability. Grounded on the strong water repellence, the resultant superhydrophobic copper plate surface exhibits multi-functions. The excellent performance can be well explained by "Cushion effect" and Capillary phenomena. As a result, water and corrosive species can be prevented from contacting with the copper plate surface, and contaminants can be taken away easily by the rolling water droplets. Meanwhile, the icing process of water is delayed on the superhydrophobic surface. Therefore, the superhydrophobic copper is endued with enhanced corrosion resistance, excellent self-cleaning and anti-icing performance. We believe that this facile method provides a simple and cost-effective process to improve the properties of copper plate, and which may see practical application of the superhydrophobic materials.
机译:该工作报告了通过AgNO3处理和十二烷基硫醇改性制造铜板上的超疏水表面的容易方法。制备的超疏水铜板呈现由纳米片和纳米粒子形成基质组成的等级和粗糙的形态。同时,长长的烷基链成功地组装在粗糙表面上。因此,铜板具有优异的超疏水性能,具有156.8度的水接触角和CA的滚动角。 3度。此外,超疏水性具有长期耐久性和优异的稳定性。基于强水闸,所得超疏水铜板表面表现出多函数。优异的性能可以通过“垫效应”和毛细血管现象很好。结果,可以防止水和腐蚀性物质与铜板表面接触,并且可以通过轧制水滴容易地避开污染物。同时,水的糖化过程被延迟在超疏水表面上。因此,超疏水铜终止,具有增强的耐腐蚀性,优异的自清洁和抗结冰性能。我们认为,这种便利方法提供了一种简单且经济有效的方法,可以改善铜板的性质,并且可能看到超疏水材料的实际应用。

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