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连接基长度对GSS/TX-100复配体系表面性质的影响
引用本文:喻红梅,华平,刘骏峰,李建华,朱成龙,朱国华,祝霞.连接基长度对GSS/TX-100复配体系表面性质的影响[J].化工学报,2017,68(1):238-243.
作者姓名:喻红梅  华平  刘骏峰  李建华  朱成龙  朱国华  祝霞
作者单位:1.南通大学化学化工学院, 江苏 南通 226019;2.南通大学纺织服装学院, 江苏 南通 226019
基金项目:江苏省科技计划项目(BY2015047-12)。
摘    要:研究了不同连接基的琥珀酸酯磺酸盐型双子表面活性剂(GSS)与辛基苯基聚氧乙烯醚(TX-100)复配体系(GSS/TX-100)在水溶液中的表面性质和胶团化行为,对混合胶团和表面吸附层的组成和相互作用参数进行了计算。结果发现:复配体系水溶液在形成胶团和表面吸附时无明显甚至不存在正加和增效,但是TX-100的加入可明显降低GSS的临界胶束浓度,混合胶团中TX-100占胶团的主要成分,GSS与TX-100具有较弱的相互作用,连接基较短的GSS更易形成胶束,也更易与TX-100形成混合胶束。

关 键 词:琥珀酸酯磺酸盐  表面活性剂  连接基  界面张力  相互作用参数  
收稿时间:2016-06-27
修稿时间:2016-09-22

Influence of GSS spacer length on surface properties of GSS/TX-100 binary mixture
YU Hongmei,HUA Ping,LIU Junfeng,LI Jianhua,ZHU Chenglong,ZHU Guohua,ZHU Xia.Influence of GSS spacer length on surface properties of GSS/TX-100 binary mixture[J].Journal of Chemical Industry and Engineering(China),2017,68(1):238-243.
Authors:YU Hongmei  HUA Ping  LIU Junfeng  LI Jianhua  ZHU Chenglong  ZHU Guohua  ZHU Xia
Affiliation:1.School of Chemistry and Chemical Engineering, Nantong University, Nantong 226019, Jiangsu, China;2.School of Textile and Clothing, Nantong University, Nantong 226019, Jiangsu, China
Abstract:Surface properties and micellization behavior of Gemini sulfo-succinate sodium(GSS) and Triton X-100(TX-100) binary mixture in aqueous solution were investigated with various GSS spacer lengths.Compositions in mixture micelles and surface absorbance layer as well as interaction parameters between the two components were analyzed.Results showed that no obvious or maybe no presence of synergistic effect between GSS and TX-100 were found on surface property and micellization in aqueous solution, although TX-100 decreased apparently critical micelle concentration(cmc) of GSS and was major component in mixture micelles.GSS of shorter spacers was easier to form micelle itself and mixture micelle with TX-100.Spontaneous formation of mixture micelle and weak molecular interaction was observed in mixture of GSS362 and TX-100.
Keywords:sulfo succinate  surfactants  spacer  interfacial tension  interaction parameters  
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