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首页> 外文期刊>Langmuir: The ACS Journal of Surfaces and Colloids >Dual scale roughness driven perfectly hydrophobic surfaces prepared by electrospraying a polymer in good solvent-poor solvent systems
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Dual scale roughness driven perfectly hydrophobic surfaces prepared by electrospraying a polymer in good solvent-poor solvent systems

机译:在良好的溶剂贫乏的溶剂体系中通过电喷涂聚合物制备的双尺度粗糙度驱动的完美疏水表面

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摘要

We demonstrated a facile method to produce perfectly hydrophobic surfaces (advancing and receding angles both 180°) via electrospraying. When a copolymer of styrene and a perfluoroacrylate monomer was electrosprayed in good solvents, surfaces composed of micrometer size beads were formed and fairly low threshold water sliding angles could be achieved. Addition of high boiling point poor solvents to the solutions resulted nanoscale roughness on the beads due to a possible phase separation that occurs in a predominantly poor solvent environment. However, sliding angles were not zero even on the nanoscale roughness dominated topographies achieved by this method. On the other hand, when the electrospraying process parameters were set such that micrometer size hills of nanoscopically rough beads were formed, 0° sliding angles were measured. Videos of droplets recorded and the adhesive forces measured during a contact and release experiment revealed that these dual scale rough surfaces were indeed perfectly hydrophobic. Application of the method with other binary good solvent-poor solvent systems also resulted in perfect hydrophobicity. Overall results showed how the differences in surface topology affected the wettability of surfaces within a very narrow range between perfect and extreme hydrophobicity (advancing and receding angles both close to 180°).
机译:我们展示了一种通过电喷涂产生完美疏水表面(前进和后退角度均为180°)的简便方法。在良好的溶剂中对苯乙烯和全氟丙烯酸酯单体的共聚物进行电喷涂时,会形成由微米尺寸的小珠组成的表面,并且可以实现相当低的阈值水滑移角。由于在主要不良溶剂环境中可能发生的相分离,因此向溶液中添加高沸点不良溶剂会在珠粒上产生纳米级粗糙度。然而,即使在通过这种方法实现的纳米级粗糙度主导的形貌上,滑动角也不为零。另一方面,当设置电喷雾工艺参数以使得形成纳米级粗糙珠的微米尺寸的小山时,测量0°滑动角。记录的液滴视频以及在接触和释放实验过程中测量的粘合力表明,这些双尺度粗糙表面确实具有完美的疏水性。将该方法与其他二元良好溶剂贫乏的溶剂体系一起使用,还可以实现完美的疏水性。总体结果表明,表面拓扑结构的差异如何在理想和极端疏水性(前进和后退角度均接近180°)之间的非常狭窄的范围内影响表面的润湿性。

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