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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >In situ study of diffusion and interaction of water and mono- or divalent anions in a positively charged membrane using two-dimensional correlation FT-IR/Attenuated total reflection Spectroscopy
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In situ study of diffusion and interaction of water and mono- or divalent anions in a positively charged membrane using two-dimensional correlation FT-IR/Attenuated total reflection Spectroscopy

机译:使用二维相关FT-IR /衰减全反射光谱法原位研究带正电荷的膜中水和一价或二价阴离子的扩散和相互作用

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摘要

Two-dimensional (2D) correlation analysis based on time-resolved FT-IR/attenuated total reflection (ATR) spectroscopy has been used to study the diffusion behavior of water and mono- or divalent anions in the positively charged membranes of different charge density. In 2D FT-IR/ATR spectra, the splitting of the water delta(OH) bending band in the spectral range 1700-1500 cm(-1) indicates that there are three different states of water in the positively charged membrane, that is, the water molecules forming strong or weak hydrogen bonds with hydrophilic groups of the membrane and water molecularly dispersed with weaker hydrogen bonds. The wavenumber difference of the delta(OH) band in the low- and high-charge-density membrane indicates that water molecules form much stronger hydrogen bonds with hydrophilic groups in the high-charge-density membrane. The sequential order of the three water bands intensity changes shows that, in the process of water diffusion into the high-charge-density membrane, the hydrogen-bonding interaction between hydrophilic groups of the membrane and water molecules takes place gradually due to the highly crosslinked network structure of the membrane; in the process of water diffusion into the low-charge-density membrane, the strong hydrogen-bonding interaction between hydrophilic groups of the membrane and water molecules takes place instantaneously and this type of water easily diffuses due to the weak interactions between the water molecules and the membrane polymer. Furthermore, the diffusion processes of the electrolyte solution such as NaAc and Na2SO4 aqueous solutions in the positively charged membrane have also been examined.
机译:基于时间分辨FT-IR /衰减全反射(ATR)光谱的二维(2D)相关分析已用于研究水和一价或二价阴离子在不同电荷密度的带正电膜中的扩散行为。在二维FT-IR / ATR光谱中,在光谱范围1700-1500 cm(-1)中的水德尔塔(OH)弯曲带的分裂表明,在带正电的膜中存在三种不同的水状态,即水分子与膜的亲水基团形成强或弱氢键,而水分子则与较弱的氢键分子分散。低电荷密度膜和高电荷密度膜中的δ(OH)带的波数差表明,水分子与高电荷密度膜中的亲水基团形成了更强的氢键。三个水带强度变化的顺序表明,在水扩散到高电荷密度膜的过程中,由于高度交联,膜的亲水基团与水分子之间的氢键相互作用逐渐发生。膜的网络结构;在水扩散到低电荷密度膜中的过程中,膜的亲水基团与水分子之间的强氢键相互作用即刻发生,由于水分子与水之间的弱相互作用,这种类型的水很容易扩散。膜聚合物。此外,还检查了电解质溶液如NaAc和Na 2 SO 4水溶液在带正电的膜中的扩散过程。

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