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Aminoazobenzene@Ag modified meshes with large extent photo-response: towards reversible oil/water removal from oil/water mixtures

机译:氨基偶氮苯@Ag修饰的网片具有较大的光响应性:朝向从油/水混合物中可逆地去除油/水

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摘要

Photo-responsive materials with superwetting properties, especially in the azo-based class, have been used in water treatment because of their smart performance on wettability changes. However, their transformation extent in wettability has always troubled researchers. Here, we modified nano-Ag pine needles and aminoazobenzene (AABN) on polydopamine (PDA) pre-treated porous meshes, realizing a large-extent reversible photo-responsive wettability transformation from highly hydrophobic to highly hydrophilic. The contact angle is about 150.0° after being exposed to visible light, and is about 10.0° under 365 nm UV light. Accordingly, the modified mesh can achieve photo-responsive removal between oil and water from oil/water mixtures. This facile and universal approach based on trans–cis isomerization of AABN could be endowed to various commercial conductive meshes. Moreover, the modified meshes exhibit satisfactory removal efficiency, reusability and physical/chemical stability, which are more promising for practical applications such as fuel recycling, remote controlled oil/water separation and astronautical resource regeneration.
机译:具有超湿特性的光敏材料,特别是基于偶氮类的光敏材料,因其对润湿性变化的智能表现而被用于水处理。但是,它们在润湿性上的转化程度一直困扰着研究人员。在这里,我们在聚多巴胺(PDA)预处理的多孔网上修饰了纳米Ag松针和氨基偶氮苯(AABN),实现了从高疏水性到高亲水性的大范围可逆光响应润湿性转化。暴露于可见光后的接触角约为150.0°,在365 nm UV光下的接触角约为10.0°。因此,改性的网可以实现从油/水混合物中的油和水之间的光响应性去除。这种基于AABN的反式-顺式异构化的通用方法可以被赋予各种商业导电网格。此外,改性的网片显示出令人满意的去除效率,可重复使用性和物理/化学稳定性,这对于诸如燃料回收,远程控制的油/水分离和航空资源再生等实际应用更有希望。

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