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具有大幅光响应的氨基偶氮苯@银修饰网:用于从油/水混合物中可逆地去除油/水

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

作者信息

Qu Ruixiang, Liu Yanan, Zhang Weifeng, Li Xiangyu, Feng Lin, Jiang Lei

机构信息

Department of Chemistry , Tsinghua University , Beijing 100084 , P. R. China . Email:

Key Laboratory of Bio-inspired Smart Interface Sciences , Technical Institute of Physics and Chemistry , Chinese Academy of Sciences , Beijing , 100084 , P. R. China.

出版信息

Chem Sci. 2019 Feb 25;10(14):4089-4096. doi: 10.1039/c9sc00020h. eCollection 2019 Apr 14.

Abstract

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 - 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.

摘要

具有超润湿性的光响应材料,尤其是偶氮基类材料,因其在润湿性变化方面的智能性能而被用于水处理。然而,它们在润湿性方面的转变程度一直困扰着研究人员。在此,我们在聚多巴胺(PDA)预处理的多孔网片上修饰了纳米银松针和氨基偶氮苯(AABN),实现了从高疏水性到高亲水性的大幅度可逆光响应润湿性转变。在可见光照射后接触角约为150.0°,在365 nm紫外光下约为10.0°。因此,改性网片可以实现油/水混合物中油和水之间的光响应去除。这种基于AABN顺反异构化的简便通用方法可以应用于各种商业导电网片。此外,改性网片表现出令人满意的去除效率、可重复使用性以及物理/化学稳定性,在燃料回收、遥控油/水分离和航天资源再生等实际应用中更具前景。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/638b/6469292/23da428fd5cd/c9sc00020h-s1.jpg

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