Citation:
YUAN Fu-Qing, LIU Dan-Dan, GUO Lan-Lei, ZHU Yang-Wen, XU Zhi-Cheng, HUANG Jian-Bin, ZHANG Lei, ZHANG Lu. Effect of Branched Cationic and Betaine Surfactants on the Wettability of a Poly(tetrafluoroethylene) Surface[J]. Acta Physico-Chimica Sinica,
;2015, 31(4): 715-721.
doi:
10.3866/PKU.WHXB201503028
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The adsorption mechanism and wetting properties of aqueous solutions of branched cationic surfactants, hexadecanol glycidyl ether ammonium chloride (C16GPC), and zwitterionic surfactant, hexadecanol glycidyl ether glycine betaine (C16GPB) on a poly(tetrafluoroethylene) (PTFE) surface were investigated using sessile drop analysis. The influences of surfactant concentration on surface tension, contact angle, adhesional tension, PTFE-solution interfacial tension, and adhesion work were expounded. The results indicate that branched surfactant molecules lie parallel to the PTFE surface through hydrophobic interactions between the multi methylene groups of the alkyl chain and the solid surface below the critical micelle concentration (cmc). C16GPC and C16GPB molecules still adsorb onto PTFE because of the marked hindrance of branched chains to the formation of micelles above the cmc. The methylene group interactions with PTFE decrease and C16GPC and C16GPB molecules become straightened on the solid surface, which results in a clear decrease in PTFE-solution interfacial tension (γsl). For branched surfactants, an abrupt decrease in contact angle appears above the cmc.
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