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Synthesis and physiochemical properties of poly(ethylene glycol)-octanol sulfosuccinates

机译:聚(乙二醇) - 氯醇磺糖苷酸盐的合成与生理化学性质

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A series of sulfonated maleic diesters with ethylene oxide groups were synthesized by the reactions of esterification and sulfonation. Maleic diesters were prepared by esterification of maleic anhydride with any one kind of poly(ethylene glycol) with different molecular weights from 200 to 1000 and isooctanol, and then sulfonated by sodium bisulfite to get poly( ethylene glycol)-octanol sulfosuccinates. Reaction temperature and time of esterification of monoester and diester, using toluene sulfonic acid as catalyst and toluene as solvent, were investigated. The surfactants synthesized are identified by FTIR and (HNMR)-H-1. Thermal analysis results identify that the investigated surfactants have a good thermal stability. The surface activity of the surfactants in aqueous solution was determined at 298 K. It was found that the critical micelle concentrations (CMC) decrease with increase of the molecular weights and the number of ethylene oxide units of the investigated products, surface tension values at the CMC (gamma(CMC)) are upward trend in general. The maximum surface excess concentration (Gamma(max)) decreases mildly with the increasing of molecular weight of poly(ethylene glycol), and area per molecule (A(min)) increases with the increasing of ethoxy chain unit. Hydrodynamic diameter of investigated surfactants increases with increasing the concentration, and decreases in general trend with increase of molecular weight of poly(ethylene glycol). Addition of salt to the aqueous solution of surfactants sharply decrease values of CMC and gamma(CMC) compared with corresponded surfactants in distilled water. (C) 2018 Elsevier B.V. All rights reserved.
机译:通过酯化和磺化的反应合成了一系列具有环氧乙烷基团的磺化马来西亚酯。马来酸二酯通过用200至1000〜1000和异辛醇的不同分子量酯化的马来酸酐与任何一种聚(乙二醇)酯化制备,然后通过亚硫酸氢钠磺化以获得聚(乙二醇) - 氯醇磺糖苷。研究了单酯和二酯的反应温度和时间,使用甲苯磺酸作为催化剂和甲苯作为溶剂。合成的表面活性剂通过FTIR和(HNMR)-H-1鉴定。热分析结果鉴定所研究的表面活性剂具有良好的热稳定性。水溶液中表面活性剂的表面活性在298k下测定。发现临界胶束浓度(CMC)随着分子量的增加和所研究的产物的环氧乙烷单元的数量而降低,表面张力值CMC(伽玛(CMC))一般是向上的趋势。随着聚(乙二醇)的分子量的增加,最大表面过量浓度(γ(MAX))温和地降低,并且每分子的面积(a(min))随着乙氧链单元的增加而增加。研究的研究表面活性剂的流体动力学直径随着浓度的增加而增加,并且随着聚(乙二醇)的分子量的增加而降低。与蒸馏水中的相应的表面活性剂相比,将盐与表面活性剂的水溶液急剧下降,与相应的表面活性剂相比,CMC和γ(CMC)的值急剧下降。 (c)2018年elestvier b.v.保留所有权利。

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