研究论文

1H NMR探究空间效应对表面活性剂复配体系中协同作用的影响

  • 陈晓瑛 ,
  • 俞刚金 ,
  • 毛诗珍 ,
  • 刘买利 ,
  • 杜有如
展开
  • 1. 波谱与原子分子物理国家重点实验室, 武汉磁共振中心(中国科学院 武汉物理与数学研究所), 湖北 武汉 430071;
    2. 中国科学院大学, 北京 100049

收稿日期: 2017-04-24

  网络出版日期: 2018-03-05

基金资助

国家自然科学基金资助项目(21375145,21221064).

An NMR Study on How Steric Effects Affect Synergistic Effects in Surfactant Mixtures

  • CHEN Xiao-ying ,
  • YU Gang-jin ,
  • MAO Shi-zhen ,
  • LIU Mai-li ,
  • DU You-ru
Expand
  • 1. State Key Laboratory of Magnetic Resonance and Atomic and Molecular Physics, National Center for Magnetic Resonance in Wuhan(Wuhan Institute of Physics and Mathematics, Chinese Academy of Sciences), Wuhan 430071, China;
    2. University of Chinese Academy of Sciences, Beijing 100049, China

Received date: 2017-04-24

  Online published: 2018-03-05

摘要

通过核磁共振氢谱(1H NMR)实验测量了温度为298.0 K时3种表面活性剂——十六烷基三甲基溴化铵(CTAB)、辛基苯基聚氧乙烯醚(TX-100)和十二烷基硫酸钠(SDS)组成的复配体系CTAB/TX-100、SDS/TX-100和CTAB/TX-100/SDS中各组分的化学位移,得到了各混合体系中CTAB、TX-100和SDS的临界胶束浓度(CMC).对不同体系中各组分CMC随摩尔分数的变化曲线进行比较,发现了空间效应对表面活性剂复配体系中协同作用的影响在一定的情况下并不逊于静电相互作用:表面活性剂分子的截面积越大,对体系中其他组分的协同作用越强;当组分间存在弱的静电相互作用时,空间效应对协同作用起到更主要的影响.

本文引用格式

陈晓瑛 , 俞刚金 , 毛诗珍 , 刘买利 , 杜有如 . 1H NMR探究空间效应对表面活性剂复配体系中协同作用的影响[J]. 波谱学杂志, 2018 , 35(1) : 75 -80 . DOI: 10.11938/cjmr20172577

Abstract

NMR spectra of aqueous solutions of cetyltrimethylammonium bromide (CTAB)/triton X-100 (TX-100), sodium dodecyl sulfate (SDS)/TX-100 and CTAB/TX-100/SDS surfactant mixtures were acquired. The proton chemical shifts of each component and their dependence on concentration were determined and used to derive the critical micelle concentrations (CMCs) of CTAB, TX-100 and SDS in each mixture. It was found that, in several cases, the role played by the steric effect in the synergism of surfactant mixtures were not less than that of the electrostatic interaction. The larger the cross sectional area of the polar head was, the greater the synergy would be. It is concluded that the steric effect is a major player in the synergistic effect of surfactant mixtures, especially when the electrostatic interaction is weak.

参考文献

[1] JONSSON B. Surfactants and polymers in aqueous solution[M]. 2nd ed. New York:John Wiley & Sons Inc, 1998.[2] HOLLAND P M, RUBINGH D N. Mixed surfactant systems:An overview[M]. Washington DC:American Chemical Society, 1992.[3] JOST F, LEITER H, SCHWUGER M J. Synergisms in binary surfactant mixtures[J]. Colloid Polym Sci, 1988, 266(6):554-561.[4] SOLANS C, IZQUIERDO P, NOLLA J, et al. Nano-emulsions[J]. Curr Opin Colloid In, 2005, 10(3,4):102-110.[5] PARIA S. Surfactant-enhanced remediation of organic contaminated soil and water[J]. Adv Colloid Interface, 2008, 138(1):24-58.[6] GARTI N, SPERNATH A, ASERIN A, et al. Nano-sized self-assemblies of nonionic surfactants as solubilization reservoirs and microreactors for food systems[J]. Soft Matter, 2005, 1(3):206-218.[7] HAN F, LI S M, YIN R, et al. Effect of surfactants on the formation and characterization of a new type of colloidal drug delivery system:Nanostructured lipid carriers[J]. Colloids and Surfaces A:Physicochem Eng Aspects, 2008, 315(1-3):210-216.[8] GIESY J P, KANNAN K. Peer reviewed:Perfluorochemical surfactants in the environment[J]. Environ Sci Technol, 2002, 36(7):146A-152A.[9] YANG J. Viscoelastic wormlike micelles and their applications[J]. Curr Opin Colloid In, 2002, 7(5):276-281.[10] HOLLAND P M, RUBINGH D N. Nonideal multicomponent mixed micelle model[J]. J Phys Chem, 1983, 87(11):1984-1990.[11] ROSEN M J, HUA X Y. Surface concentrations and molecular interactions in binary mixtures of surfactants[J]. J Colloid Inter Sci, 1982, 86(1):164-172.[12] ROSEN M J, ZHU Z H. Synergism in binary mixtures of surfactants[J]. J Colloid Inter Sci, 1993, 133(2):473-478.[13] CUI X, JIANG Y, YANG C, et al. Mechanism of the mixed surfactant micelle formation[J]. J Phys Chem B, 2010, 114(23):7808-7816.[14] GAO H, ZHU R, YANG X, et al. Properties of polyethylene glycol (23) lauryl ether with cetyltrimethylammonium bromide in mixed aqueous solutions studied by self-diffusion coefficient NMR[J]. J Colloid Inter Sci, 2004, 273(2):626-631.[15] YANG C S, CUI X H, JIANG Y, et al. Mixed micelles of sodium dodecyl sulfate and triton X-100 in aqueous solution studied by <sup>1</sup>H NMR[J]. Chinese J Magn Reson, 2009, 26(4):466-475. 杨春升, 崔晓红, 蒋艳, 等. 表面活性剂SDS/TX-100混合体系的NMR研究[J]. 波谱学杂志, 2009, 26(4):466-475.[16] YU G J, LIU J, MAO S Z, et al. Exchange kinetics of surfactants TX-100 and CTAB investigated by <sup>1</sup>H NMR spectroscopy[J]. Chinese J Magn Reson, 2016, 33(3):422-431. 俞刚金, 刘君, 毛诗珍, 等. TX-100和CTAB交换动力学的核磁共振研究[J]. 波谱学杂志, 2016, 33(3):422-431.[17] ROSEN M J, KUNJAPPU J T. Surfactants interfacial phenomena[M]. 4th ed. New York:John Wiley & Sons Inc., 2012.
文章导航

/