首页> 外文期刊>Journal of Colloid and Interface Science >Investigation of the micropolarity in reverse micelles of nonionic poly(ethylene oxide)surfactants using 4-nitropyridine-Af-oxide as absorption probe
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Investigation of the micropolarity in reverse micelles of nonionic poly(ethylene oxide)surfactants using 4-nitropyridine-Af-oxide as absorption probe

机译:以4-硝基吡啶-Af-氧化物为吸收探针研究非离子型聚环氧乙烷表面活性剂反胶束中的微极性

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摘要

The micropolarities of the reverse micelle(RM)interior of nonionic poly(ethylene oxide)surfactants of the alkyl ether type(poly(ethylene oxide)[4] lauryl ether(C_(12)E_4,Brij 30)),alkyl-aryl ethers(poly(ethylene oxide)[4] nonylphenyl ether(C_9phiE_4),poly(ethylene oxide)[5] nonylphenyl ether(C_9phiE_5),and poly(ethylene oxide)[5] octylphenyl ether(C_8phiE_5)),and poly(ethylene oxide)-poly(propylene oxide)-poly(ethylene oxide)(PEO-PPO-PEO)triblock copolymers(Pluronics P123,F127)were investigated as a function of the water content by applying the absorption probe technique,using 4-nitropyridine-N-oxide(NP)as a probe.The change in the micellar aggregate micropolarity in different solvents(cyclohexane,decane,n-butanol,and n-butyl acetate)at various water contents has been investigated.The research was focused on the determination of the effects of surfactant structure and solvent type on the hydration degrees of the PEO chains in the region at the core limit,where the NP probe was located.All results regarding the polarities in RM and PEO/water calibration mixtures have been expressed in terms of Kosower's Z values,using the linear dependence of E_(NP)ON Kosower's Z.The PPO/butanol mixtures have also been used for RM in butanol as a reference system.The data revealed that local polarity in RM is dependent on the surfactant type,block copolymer composition,solvent nature,and water content.At the same water content,the results clearly indicate a lower hydration degree of triblock copolymers,as compared to the surfactants of the alkyl ether and alkyl-aryl ether type,but for P123 and F127 Pluronics in n-butanol the hydration is higher owing to the behavior of butanol as cosurfactant and to its hydration.
机译:烷基醚型非离子型聚环氧乙烷表面活性剂(聚环氧乙烷[4]月桂基醚(C_(12)E_4,Brij 30)),烷基芳基醚的反胶束(RM)内部的微极性(聚(环氧乙烷)[4]壬基苯基醚(C_9phiE_4),聚(环氧乙烷)[5]壬基苯基醚(C_9phiE_5)和聚(环氧乙烷)[5]辛基苯基醚(C_8phiE_5))和聚(环氧乙烷) -使用4-硝基吡啶-N,采用吸收探针技术研究了聚(环氧丙烷)-聚环氧乙烷(PEO-PPO-PEO)三嵌段共聚物(Pluronics P123,F127)与水含量的关系研究了在不同含水量下不同溶剂(环己烷,癸烷,正丁醇和乙酸正丁酯)中胶束聚集体微极性的变化。表面活性剂结构和溶剂类型对核心探针NP探针所在区域PEO链水合度的影响关于RM和PEO /水校准混合物中极性的所有结果已通过E_(NP)ON Kosower Z的线性关系表示为Kosower的Z值.PPO /丁醇混合物也已用于丁醇中的RM数据表明,RM中的局部极性取决于表面活性剂类型,嵌段共聚物组成,溶剂性质和水含量。在相同的水含量下,结果清楚地表明,三嵌段共聚物的水合度较低对于烷基醚和烷基芳基醚类型的表面活性剂,但是对于P123和F127 Pluronics在正丁醇中,由于丁醇作为助表面活性剂的行为及其水合,其水合度更高。

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