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Novel Pyridinium Surfactants with Unsaturated Alkyl Chains:Aggregation Behavior and Interactions with Methyl Orange in Aqueous Solution

机译:具有不饱和烷基链的新型吡啶鎓表面活性剂:在水溶液中的聚集行为及其与甲基橙的相互作用

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摘要

This paper presents the synthesis and a study of the aggregation behavior of 4-undecyl-1-methyl- and 4-undecenyl-1-methylpyridinium iodide surfactants. The effect of the position of the double bond in the alkyl chain of the surfactant on the critical micelle concentration (cmc), degree of counterion binding (β), Krafft temperature, and thermodynamic parameters of micelle formation has been investigated. Also, a pyridinium surfactant with a triple bond in the alkyl chain has been studied. The cmc values of the surfactants increase after the introduction of a double bond or a triple bond in the tail as compared to the saturated equivalents. The largest effect was observed for surfactants with a cis-oriented double bond in the alkyl chain. The enthalpies of micelle formation (ΔH°) were shown to be exothermic. Introduction of an unsaturation in the tail leads to an increase of the enthalpy of micelle formation. The largest effect is observed for 4-(1-undecynyl)-1-methylpyridinium iodide. The influence of a double bond in the tail of the surfactants on the absorption spectrum of methyl orange (MO) complexed to the surfactant was studied by UV-vis spectroscopy. Low concentrations of 4-alkyl-1-alkylpyridinium amphiphiles induce a new, ca. 80-nm, blue-shifted band. However, the surfactants 4-(10-undecenyl)-1-methylpyridinium iodide, 4-(5-cis-undecenyl)-1-methylpyridinium iodide, and 4-(5-trans-undecenyl)-1-methylpyridinium iodide do not induce this absorption band at short wavelengths. In contrast, 4-(1-undecenyl)-1-methylpyridinium iodide and 4-(1-undecynyl)-1-methylpyridinium iodide showed this short wavelength absorption band positioned at 383 nm.
机译:本文介绍了4-十一烷基-1-甲基碘和4-十一烯-1-甲基碘化碘表面活性剂的合成及其聚集行为。研究了表面活性剂烷基链中双键位置对临界胶束浓度(cmc),抗衡离子结合度(β),Krafft温度以及胶束形成的热力学参数的影响。另外,已经研究了在烷基链上具有三键的吡啶鎓表面活性剂。与饱和当量相比,在尾部引入双键或三键后表面活性剂的cmc值增加。对于在烷基链上具有顺式双键的表面活性剂,观察到了最大的影响。胶束形成的焓(ΔH°)显示为放热的。在尾巴中引入不饱和度导致胶束形成的焓增加。对于碘化4-(1-十一炔基)-1-甲基吡啶鎓,观察到最大的作用。通过紫外-可见光谱研究了表面活性剂尾部的双键对与表面活性剂络合的甲基橙(MO)吸收光谱的影响。低浓度的4-烷基-1-烷基吡啶两亲物会诱导新的约80纳米,蓝移频带。但是,表面活性剂碘化4-(10-十一碳烯基)-1-甲基吡啶鎓,碘化4-(5-顺式十一碳烯基)-1-甲基吡啶鎓和碘化4-(5-反式十一碳烯基)-1-甲基吡啶鎓。在短波长的吸收带。相反,碘化4-(1-十一碳烯基)-1-甲基吡啶鎓和碘化4-(1-十一碳烯基)-1-甲基吡啶鎓显示该短波长吸收带位于383nm。

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