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Investigating the Surface Superhydrophilic and Superhydrophobic Modification Using Nanoscale Bilayers Assembly on Stainless Steel Plate

机译:在不锈钢板上使用纳米级双层组装使用纳米级双层组件的表面超硫酸化和超疏水改性

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This study investigated the use of nanoscale bilayers assembly for superhydrophilic and superhydrophobic surface modification on stainless steel plate. This study performed nanoscale bilayers assembly method, as well as chemical vapor deposition (CVD) to perform fluorosilan treatment on the modification surface, to modify the surface structure and thereby the wettability of the surface at 16, 17, 18, and 19 bilayers. At 16 bilayers, the contact angle is 7°; at 17 bilayers, the contact angle is 5°; at 18 bilayers, the contact angle is 4°, satisfying the requirement for superhydrophibicity; at 19 bilayers, the contact angle is 8°. According to experimental results, surface modification was able to reduce the contact angle of water on a stainless steel flat plate. The hydrophilic surface was further modified into a hydrophobic. Experimental results showed 18 bilayers to yield the largest contact angle of 153° (compared to 87° on the unmodified surface), corresponding to the highest surface superhydrophobicity.
机译:本研究调查了在不锈钢板上使用纳米级双层组件进行超烯丙基和超疏水表面改性。该研究进行了纳米级双层组装方法,以及化学气相沉积(CVD),以对改性表面进行氟硅烷处理,以改变表面结构,从而在16,17,18和19双层处的表面的润湿性。在16个双层,接触角为7°;在17个双层,接触角为5°;在18个双层,接触角为4°,满足超流药物的要求;在19个双层,接触角为8°。根据实验结果,表面改性能够减少水在不锈钢平板上的接触角。进一步修饰亲水表面疏水。实验结果表明,18双层,以产生153°的最大接触角(与未修饰的表面上的87°相比),对应于最高的表面超流性。

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