4.6 Article

The influence of surface modification on the physicochemical properties of ceramic membranes

出版社

ELSEVIER SCIENCE BV
DOI: 10.1016/j.colsurfa.2013.10.044

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Ceramic membranes; Hydrophobicity; Perfluoroalkylsilanes; Surface free energy

资金

  1. Polish Ministry of Science and Higher Education [NN 209 255138]

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Titania ceramic membranes were efficiently modified with perfluoroalkylsilanes (PFAS). PFAS compounds with different length of fluorine alkyl chain (in the range of 6-12 carbon atoms in chain) were used during experiments. Grafting process efficiency was determined by contact angle measurements of water and glycerol. The highest hydrophobicity was obtained for the membrane grafted by C12 after 53 h of modification. The contact angle value was equal to 136 degrees. The least efficient modification was obtained for the membrane grafted with C8, the contact angle was equal to 126 degrees after 53 h of grafting. The contact angle measurements with bipolar substance (glycerol) were also carried out in order to apply the Owens-Wendt method for the determination of the surface free energy (SFE) values of modified membranes. The different mode of PFAS chains attachment to the membrane surface was observed. This phenomena was related to different structure of grafting molecules. The hindrance steric effect was observed for more hydrophobic molecules (C10, C12). The surface grafting process was characterized applying Si-29 NMR and TGA techniques. According to obtained results, three possible types of bonding of the hydrophobic chains to the materials surface were determined. Additionally, based on the results, it was found that type of PFAS molecule has a strong influence on the mode of anchored hydrophobic molecules to the surface. It was found that PFAS molecules with shorter fluorocarbon chains are attached mainly by siloxane (T-3) and geminal silanol bonds (T-2), whereas longer chains are attached mainly by single (T-1) and geminal silanol (T-2) bonds. (C) 2013 Elsevier B.V. All rights reserved.

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