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阴离子染料茜素红S与烷氧基吡啶鎓表面活性剂之间结合相互作用的定量评估:详细的胶束化、光谱和电化学研究

A quantitative appraisal of the binding interactions between an anionic dye, Alizarin Red S, and alkyloxypyridinium surfactants: a detailed micellization, spectroscopic and electrochemical study.

作者信息

Sharma Renu, Kamal Ajar, Mahajan Rakesh Kumar

机构信息

Department of Chemistry, UGC-Centre for Advanced Studies-I, Guru Nanak Dev University, Amritsar-143005, India.

出版信息

Soft Matter. 2016 Feb 14;12(6):1736-49. doi: 10.1039/c5sm02667a. Epub 2016 Jan 4.

Abstract

The interactions of an anionic redox-active dye Alizarin Red S (ARS) with novel N-hydroxyethyl-3-alkyloxypyridinium surfactants 1-(2-hydroxyethyl)-3-(tetradecyloxy)pyridinium bromide, [HEC14OPyBr], and 1-(2-hydroxyethyl)-3-(hexadecyloxy)pyridinium bromide, [HEC16OPyBr], were investigated in an aqueous solution for the first time with an attempt to obtain comprehensive knowledge of oppositely charged dye-surfactant mixed systems. Different state-of-the-art techniques viz. conductivity, surface tension (ST), UV-visible spectroscopy, cyclic voltammetry (CV), linear sweep voltammetry (LSV), potentiometry, dynamic light scattering (DLS) and (1)H-NMR analysis have been employed. The presence of ARS decreases the critical micelle concentration (cmc) of alkyloxypyridinium surfactants as the ARS monomers behave as aromatic counterions. A combined analysis of the techniques revealed the existence of cation-π, π-π stacking, H-bonding, electrostatic and hydrophobic interactions among ARS and alkyloxypyridinium surfactants. A quantitative appraisal of the process of interaction among ARS and alkyloxypyridinium surfactants has been made in terms of various micellar, binding and electrochemical parameters evaluated using ST, UV-visible and voltammetric measurements. Also, the results extracted from (1)H-NMR and voltammetric measurements indicate that the catechol moiety of ARS is involved in the binding mechanism among ARS and alkyloxypyridinium surfactants.

摘要

首次在水溶液中研究了阴离子氧化还原活性染料茜素红S(ARS)与新型N-羟乙基-3-烷基氧基吡啶鎓表面活性剂1-(2-羟乙基)-3-(十四烷氧基)吡啶溴化物[HEC14OPyBr]和1-(2-羟乙基)-3-(十六烷氧基)吡啶溴化物[HEC16OPyBr]的相互作用,旨在全面了解带相反电荷的染料-表面活性剂混合体系。采用了不同的先进技术,即电导率、表面张力(ST)、紫外可见光谱、循环伏安法(CV)、线性扫描伏安法(LSV)、电位分析法、动态光散射(DLS)和(1)H-NMR分析。由于ARS单体表现为芳香抗衡离子,ARS的存在降低了烷基氧基吡啶鎓表面活性剂的临界胶束浓度(cmc)。这些技术的综合分析揭示了ARS与烷基氧基吡啶鎓表面活性剂之间存在阳离子-π、π-π堆积、氢键、静电和疏水相互作用。根据使用ST、紫外可见和伏安测量评估的各种胶束、结合和电化学参数,对ARS与烷基氧基吡啶鎓表面活性剂之间的相互作用过程进行了定量评估。此外,从(1)H-NMR和伏安测量中提取的结果表明,ARS的儿茶酚部分参与了ARS与烷基氧基吡啶鎓表面活性剂之间的结合机制。

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