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Micellization and Clouding Behavior of EO-PO Block Copolymer in Aqueous Salt Solutions

机译:EO-PO嵌段共聚物在盐溶液中的胶束化和浑浊行为

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摘要

Aqueous solution properties of polyethylene oxide-block-polypropylene oxide-block-polyethylene oxide TBP [(PEO)_(103)(PPO)_(39)(PEO)_(103)] were studied in the presence of sodium salts with different anions (NaI, NaBr, NaCl, NaF, Na2SO4, Na3PO4) to investigate unimer-to-micelle transition [critical micelle concentration (CMC), critical micellization temperature (CMT)], micelle size and the phase separation (cloud point). This TBP, due to its very hydrophilic (80% PEO) nature does not form micelles at ambient temperatures. Micellization can be induced much below its CMT in water on addition of sodium salts having different anions. Analytical methods viz. fluorescence, FTIR and dynamic light scattering (DLS) were used to monitor the salt-induced micellization. The hydration of respective anion and resultant contribution to its salting-out effect was found to be the governing factor in promoting micellization. The presence of salt decreases the CMC, CMT and phase separation temperature. The salts affect the aggregation process in agreement with an order mentioned in Hofmeister series.
机译:研究了聚环氧乙烷-嵌段-聚环氧丙烷-嵌段-聚环氧乙烷TBP [(PEO)_(103)(PPO)_(39)(PEO)_(103)]的水溶液性质阴离子(NaI,NaBr,NaCl,NaF,Na2SO4,Na3PO4)以研究单体到胶束的转变[临界胶束浓度(CMC),临界胶束化温度(CMT)],胶束尺寸和相分离(浊点)。由于其非常亲水(80%PEO)的性质,该TBP在环境温度下不会形成胶束。加入具有不同阴离子的钠盐,可在水中将胶束化作用远远低于其CMT。分析方法荧光,FTIR和动态光散射(DLS)用于监测盐诱导的胶束化。发现各个阴离子的水合以及其对盐析作用的贡献是促进胶束化的决定性因素。盐的存在会降低CMC,CMT和相分离温度。这些盐按照Hofmeister系列中提到的顺序影响聚集过程。

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