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首页> 外文期刊>Colloids and Surfaces, A. Physicochemical and Engineering Aspects >Hierarchical polymeric textures via solvent-induced phase transformation: A single-step production of large-area superhydrophobic surfaces
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Hierarchical polymeric textures via solvent-induced phase transformation: A single-step production of large-area superhydrophobic surfaces

机译:通过溶剂诱导的相变形成多层聚合物纹理:大面积超疏水表面的一步生产

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摘要

We report on a rapid, single-step method to produce large-area superhydrophobic surfaces via acetone-induced phase transformation of polycarbonate. Crystallization of the polymer leads to the formation of a hierarchical structure composed of microporous spherulites covered with nano-fibrils, and resulted in superhydrophobic wetting behavior. A systematic study of the dependence of surface morphology on the acetone treatment time was conducted to optimize the treatment time and to elucidate the structure formation mechanism. The resulting surfaces exhibit high contact angles, low contact angle hysteresis, and complete dewetting during droplet impact. Theoretical analysis of the wetting and anti-wetting pressures shows that the nano-scale morphology is critical for achieving droplet impact resistance. This simple phase transformation approach could be more broadly applied to other solvent-polymer systems for fabricating large-area hierarchical surface textures.
机译:我们报告了一种快速,一步法通过丙酮诱导的聚碳酸酯相变产生大面积超疏水表面的方法。聚合物的结晶导致形成由覆盖有纳米原纤维的微孔球晶组成的分层结构,并导致超疏水润湿行为。对表面形态对丙酮处理时间的依赖性进行了系统研究,以优化处理时间并阐明结构形成机理。产生的表面在液滴撞击期间表现出高的接触角,低的接触角滞后以及完全脱湿。对润湿压力和反润湿压力的理论分析表明,纳米级形态对于实现耐液滴冲击性至关重要。这种简单的相变方法可以更广泛地应用于其他用于制造大面积分层表面纹理的溶剂-聚合物体系。

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