4.7 Article

Bioinspired design of underwater superoleophobic Poly(N-isopropylacrylamide)/polyacrylonitrile/TiO2 nanofibrous membranes for highly efficient oil/water separation and photocatalysis

Journal

ENVIRONMENTAL RESEARCH
Volume 186, Issue -, Pages -

Publisher

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.envres.2020.109494

Keywords

Fish scale; Underwater superoleophobic; Photocatalysis; Oil/water separation; Thermo-responsive

Funding

  1. National Natural Science Foundation of China [11702187, 21806121]
  2. Natural Science Foundation of Tianjin [17JCQNJC08000, 18JCQNJC03400]
  3. Natural Science Foundation of Fujian [2018J01504, 2018J01505]
  4. Opening Project of Green Dyeing and Finishing Engineering Research Center of Fujian University [2017001A, 2017001B, 2017002B]
  5. Program for Innovative Research Team in University of Tianjin [TD13-5043]

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Inspired by fish scales, this study prepares a thermo-responsive underwater oleophobic PNIPAM/PAN/TiO2 nanofibrous membranes by traditional electrospinning technique using poly-N-isopropylacrylamide (PNIPAM) and polyacrylonitrile (PAN). Thermal properties, mechanical properties, surface chemical composition, wettability, photocatalysis, and oil/water separation of PNIPAM/PAN/TiO2 membrane are explored compared to pure PNIPAM membrane. Result reveals that PAN/TiO2 compounds make PNIPAM membrane with a smaller fiber diameter of 141 nm and high tensile stress of 7.4 MPa, and also decompose 98% of rhodamine B after UV light radiation. This bioinspired design structure endows the membrane with superhydrophilicity with a low water contact angle, and underwater superoleophobicity with a high oil contact angle of 157 degrees (petroleum ether) and 151 degrees (dichloromethane). This membrane can efficiency separate oil/water mixture with a high separation efficiency. Moreover, the resultant PNIPAM/PAN/TiO2 membrane has the bionic fish scale structure, and has wettability respond at lower critical solution temperature making the water flux decreased from 10013 +/- 367 L m(-2).h(-1) to 7713 +/- 324 L m(-2).h(-1), and thus has a potential to be used in purification of reclaimed water and separation of oil from water.

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