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首页> 外文期刊>Macromolecules >Mechanism of the pH-induced discontinuous swelling/deswelling transitions of poly(allylamine hydrochloride)-containing polyelectrolyte multilayer films
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Mechanism of the pH-induced discontinuous swelling/deswelling transitions of poly(allylamine hydrochloride)-containing polyelectrolyte multilayer films

机译:pH诱导含聚烯丙胺盐酸盐的聚电解质多层膜不连续溶胀/溶胀转变的机理

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摘要

The mechanism of the discontinuous swelling/deswelling transitions exhibited by polyelectrolyte multilayers containing poly(allylamine hydrochloride) (PAH) was examined by FT-IR spectroscopy, in-situ atomic force microscopy (AFM), and in-situ ellipsometry. Assembly pH was found to play a critical role in determining the postassembly pH-dependent swelling behavior of multilayers containing PAIT Multilayer films assembled at pH < 8.5 were found to exhibit pH-independent swelling behavior over the pH range of 2.0-10.5, whereas dramatic discontinuous swelling transitions were observed when the assembly pH was greater than 8.5. FT-IR spectroscopy was used to demonstrate unequivocally that the pH-triggered, discontinuous swelling/deswelling transitions of PAH/sulfonated polystyrene (SPS) multilayers assembled at high pH (> 8.5) are driven by changes in the degree of ionization of free amine groups of PAH that are established during multilayer assembly. The pH trigger points of these swelling/ deswelling transitions are determined by the elimination/reestablishment of hydrophobically associated PAH chain segments. Such hydrophobic interactions are responsible for shifting the pKa of the free amine groups of PAH to unusually low values (ca. pH 4.0). The kinetics of deswelling were found to be strongly influenced by the type of polyanion assembled with PAH.
机译:通过FT-IR光谱,原位原子力显微镜(AFM)和原位椭圆光度法研究了含有聚(烯丙胺盐酸盐)(PAH)的聚电解质多层膜所表现出的不连续溶胀/溶胀转变的机理。发现组装pH在决定包含PAIT的多层膜的组装后pH依赖性溶胀行为中起关键作用。发现在pH <8.5的条件下组装的多层薄膜在2.0-10.5的pH范围内表现出非pH依赖性溶胀行为,而剧烈的不连续性当组装件的pH大于8.5时,观察到溶胀转变。 FT-IR光谱法明确地证明了在高pH(> 8.5)下组装的PAH /磺化聚苯乙烯(SPS)多层膜的pH触发,不连续的溶胀/溶胀转变是由游离胺基离子化程度的变化驱动的多层组装过程中建立的PAH含量。这些溶胀/溶胀转变的pH触发点是通过消除/重建疏水相关的PAH链段来确定的。这种疏水性相互作用负责将PAH的游离胺基的pKa转变为异常低的值(约pH 4.0)。发现溶胀的动力学受到与PAH组装的聚阴离子类型的强烈影响。

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