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含羟乙基的全氟聚醚季铵盐表面活性剂的表面活性、润湿性和聚集行为

Surface Activity, Wetting, and Aggregation of a Perfluoropolyether Quaternary Ammonium Salt Surfactant with a Hydroxyethyl Group.

作者信息

Dou Jiangxun, Liu Jiaoyan, Wang Yan, Zhi Lifei, Shen Jixian, Wang Guoyong

机构信息

School of Chemical Engineering and Technology, Taiyuan University of Science and Technology, Taiyuan 030024, China.

China Research Institute of Daily Chemical Industry, Taiyuan 030001, China.

出版信息

Molecules. 2023 Oct 18;28(20):7151. doi: 10.3390/molecules28207151.

Abstract

This paper reports the synthesis of a novel quaternary surfactant containing a hydroxyethyl group (PFPE-C) and the surface properties of its aqueous solution (investigated by comparisons with two structurally similar chemicals, dodecyl-(2-hydroxyethyl)-dimethylammonium chloride (DHDAC) and PFPE-A). The minimum surface tension (γCMC) and critical micelle concentration (CMC) of the PFPE-C aqueous solution were 17.35 mN/m and 0.024 mmol/L, respectively. This study confirms that surfactants containing hydroxyethyl groups efficiently reduce the surface tension of aqueous solutions, and fluorocarbon surfactants exhibit better surface activity than ordinary hydrocarbon surfactants with similar structures. The micellization, aggregation, air-water interfacial adsorption, and wettability of PFPE-C aqueous solutions have been systematically investigated. Highly concentrated PFPE-C aqueous solutions exhibit good wettability on PTFE and paraffin films. Moreover, the aggregates of PFPE-C in the aqueous solution were clearly seen as vesicles on Cryo-TEM micrographs. Primary biodegradation results indicate that 19% of PFPC-C can be degraded within one week.

摘要

本文报道了一种含羟乙基的新型季铵盐表面活性剂(PFPE-C)的合成及其水溶液的表面性质(通过与两种结构相似的化合物十二烷基-(2-羟乙基)-二甲基氯化铵(DHDAC)和PFPE-A进行比较研究)。PFPE-C水溶液的最低表面张力(γCMC)和临界胶束浓度(CMC)分别为17.35 mN/m和0.024 mmol/L。本研究证实,含羟乙基的表面活性剂能有效降低水溶液的表面张力,且碳氟表面活性剂比具有相似结构的普通碳氢表面活性剂表现出更好的表面活性。对PFPE-C水溶液的胶束化、聚集、气-水界面吸附和润湿性进行了系统研究。高浓度的PFPE-C水溶液在聚四氟乙烯和石蜡膜上表现出良好的润湿性。此外,在冷冻透射电子显微镜照片上可以清楚地看到PFPE-C在水溶液中的聚集体为囊泡。初步生物降解结果表明,19%的PFPC-C可在一周内降解。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/04fc/10608880/856ad816bc2e/molecules-28-07151-sch001.jpg

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