环氧乙烷-环氧丙烯-环氧乙烷嵌段共聚物的相对溶液及界面疏水性

Patrick W. Houlihan, Daniel Fornasiero , Franz Grieser, Thomas W. Healy
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引用次数: 3

摘要

通过改变一系列聚(环氧乙烷-环氧乙烷-环氧乙烷)(EPE)非离子共聚物中环氧乙烷(EO)与环氧乙烷(PO)单元的比例,我们已经能够量化在体溶液和界面过程中环氧乙烷和环氧乙烷单元的相对疏水能贡献。已知这些聚合物在溶液中形成聚集体,聚集体由亲水性EO壳包围的疏水性PO核组成。为了确定各自EPE聚合物的疏水性,监测了强疏水探针芘在水环境和疏水聚合物环境之间的分配作为聚合物浓度的函数。聚集体的疏水性取决于EO和PO的链长,因此每个PO单位的疏水性贡献是每个EO单位的亲水性贡献的十倍。EPE稳定疏水颗粒(炭黑)的水性胶体分散的能力作为EPE浓度的函数进行了测量。临界稳定浓度,代表胶体稳定性的开始,与散装溶液中聚合物聚集体的疏水性成反比。本研究中收集的信息可以预测用于稳定疏水胶体分散的最佳EO:PO:EO比例。
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The relative solution and interfacial hydrophobicity of ethylene oxide—propylene oxide—ethylene oxide block copolymers

By varying the ratio of the ethylene oxide (EO) to propylene oxide (PO) units in a series of poly(ethylene oxide—propylene oxide—ethylene oxide) (EPE) non-ionic copolymers we have been able to quantify the relative hydrophobic energy contribution of the EO and PO units in bulk solution and interfacial processes. These polymers are known to form aggregates in solution which consist of a hydrophobic PO core surrounded by a hydrophilic EO shell. In order to determine the hydrophobic character of the respective EPE polymers the partitioning of pyrene, a strongly hydrophobic probe, between the aqueous environment and the hydrophobic polymer environment was monitored as a function of polymer concentration. Aggregate hydrophobicity was found to be dependent on both the EO and PO chain lengths such that the hydrophobic contribution per PO unit is ten times the hydrophilic contribution per EO unit. The ability of EPE to stabilise an aqueous colloidal dispersion of hydrophobic particles (carbon black) was measured as a function of EPE concentration. The critical stabilisation concentration, which represents the onset of colloidal stability, was round to be inversely related to the hydrophobicity of the polymer aggregates in the bulk solution. The information gathered in this study allows the optimum EO:PO:EO ratio for stabilisation of a hydrophobic colloidal dispersion to be predicted.

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