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Facile Fabricating Strategy for Bioinspired Flexible Film with Cavitation: Liquid Super-Repellent Material with Stimulate-Response on Liquid Adhesion

机译:简单Bioinspired制造策略灵活的电影与空化:液体Super-Repellent材料Stimulate-Response在液体粘附

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摘要

Inspired by liquid super-repellent skin of springtail,air pockets with tiny openings are fabricated on the surface of polydimethylsiloxane(PDMS)to achieve a stable existence of gas between liquid and micro-nanostructure. After further low-energy grafting,the PDMS with air pocket microstructures shows a well hydrophobic and oleophobic property. When the liquid droplet fell on the fabricated surface,the positive pressure generated by the air pocket promotes the wetting state to be much fitting with the Cassie-Baxter model. Based on the super-repellent microstructures,the flexible material shows properties of anti-icing and anti-fog. Additionally,the positive pressure of the air pocket to liquid droplet changed to be negative when stretching stress is applied to the PDMS elastomer. Based on the changed pressure,wetting state of the liquid droplet reversed from super-low adhesion to high adhesion. The stimulus-responsive material with reversible wettability has great potential in the applications of microfluidic chip and controlled releasing liquid micro-droplets.
机译:灵感来自液体super-repellent皮肤的弹尾虫、空气与微小的开口的口袋捏造的表面上聚二甲基硅氧烷(PDMS)达到一个稳定的气体和液体之间的存在micro-nanostructure。嫁接,PDMS与空气的口袋微观结构显示了一个疏水性和疏油性。当液滴落在编造的表面,产生的正压气穴促进润湿状态得多与Cassie-Baxter模型拟合。super-repellent的微观结构,灵活材料的防结冰和显示属性防雾。空气袋液体滴改变当拉伸应力应用于消极PDMS弹性体。压力,润湿状态的液体滴从超低附着力高逆转附着力。可逆的润湿性有巨大的潜力微流控芯片的应用和控制释放液体微。

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