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首页> 外文期刊>Nanoscale >Femtosecond laser induced underwater superaerophilic and superaerophobic PDMS sheets with through microholes for selective passage of air bubbles and further collection of underwater gas
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Femtosecond laser induced underwater superaerophilic and superaerophobic PDMS sheets with through microholes for selective passage of air bubbles and further collection of underwater gas

机译:飞秒激光诱导的水下superaerophilic和superaerophobic PDMS表通过微孔进行有选择性的通过水下气泡和进一步收集气体

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摘要

Controlling underwater bubble behavior on a solid surface is of great research significance, particularly in extreme cases. However, the realization of artificial underwater superaerophobic or superaerophilic surfaces is still a challenge. Herein, a micro/nanoscale hierarchical rough structure was formed on polydimethylsiloxane (PDMS) surface by one-step femtosecond laser ablation. The as-prepared surface showed superhydrophobicity in air and superaerophilicity in water. Interestingly, the wettability of such a PDMS surface could be easily switched to in-air superhydrophilicity and underwater superaerophobicity once it was further irradiated by oxygen plasma because the surface chemistry changed. The original femtosecond laser-structured underwater superaerophilic PDMS surface could absorb/capture bubbles, while the plasma-treated underwater superaerophobic surface had excellent anti-bubble ability in water. A rough through-microhole-array PDMS sheet was prepared by a mechanical drilling process and subsequent femtosecond laser ablation. The sheet could selectively allow bubbles to pass, that is, the porous underwater superaerophilic sheet allowed bubbles to pass through, while the porous underwater superaerophobic sheet was able to intercept bubbles in a water medium. Using the porous underwater superaerophilic PDMS sheet as the core component, a device that has great ability of collecting underwater bubbles/gas was also designed.
机译:在固体控制水下气泡行为表面具有重要的研究意义,在极端的情况下尤其如此。实现人工水下superaerophobic或superaerophilic表面仍然是一个挑战。分层的结构形成聚二甲基硅氧烷(PDMS)表面的一步飞秒激光烧蚀。在空气和表面显示superhydrophobicitysuperaerophilicity在水里。润湿性的PDMS表面轻松地转向空中superhydrophilicity和水下superaerophobicity一旦进一步氧等离子体辐照,因为水面化学改变。laser-structured水下superaerophilic PDMS表面能吸收/捕获泡沫,而plasma-treated水下superaerophobic表面在水中有极好的对抗泡沫的能力。粗糙through-microhole-array PDMS表由一个机械钻井过程随后的飞秒激光烧蚀。可以有选择地让泡沫通过,多孔水下superaerophilic表通过允许泡沫,而多孔水下superaerophobic表能够拦截泡沫水介质。多孔水下superaerophilic PDMS表伟大的核心组件,一个设备收集水下气泡/气体的能力还设计了。

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