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Broadband dielectric spectroscopic, calorimetric, and FTIR-ATR investigations of D-arabinose aqueous solutions

机译:D-阿拉伯糖水溶液的宽带介电谱,量热法和FTIR-ATR研究

摘要

The dielectric relaxation behavior of D-arabinose aqueous solutions at different water concentrations is examined by broadband dielectric spectroscopy in the frequency range of 10-2-107 Hz and in the temperature range of 120-300 K. Differential scanning calorimetry is also performed to find the glass transition temperatures (Tg). In addition, the same solutions are analyzed by Fourier transform infrared (FTIR) spectroscopy using the attenuated total reflectance (ATR) method at the same temperature interval and in the frequency range of 3800-2800 cm-1. The temperature dependence of the relaxation times is examined for the different weight fractions (xw) of water along with the temperature dependence of dielectric strength. Two relaxation processes are observed in the aqueous solutions for all concentrations of water. The slower process, the so-called primary relaxation process (process-I), is responsible for the Tg whereas the faster one (designated as process-II) is due to the reorientational motion of the water molecules. As for other hydrophilic water solutions, dielectric data for process-II indicate the existence of a critical water concentration above which water mobility is less restricted. Accordingly, FTIR-ATR measurements on aqueous solutions show an increment in the intensity (area) of the O-H stretching sub-band close to 3200 cm-1 as the water concentration increases.
机译:通过宽带介电谱在10-2-107 Hz的频率范围内和120-300 K的温度范围内检查了D-阿拉伯糖水溶液在不同水浓度下的介电弛豫行为。还进行了差示扫描量热法玻璃化转变温度(Tg)。此外,使用衰减全反射率(ATR)方法在相同温度间隔和3800-2800 cm-1频率范围内,通过傅立叶变换红外(FTIR)光谱分析相同的溶液。对于水的不同重量分数(xw)以及介电强度的温度依赖性,检查了弛豫时间的温度依赖性。对于所有浓度的水,在水溶液中观察到两个松弛过程。较慢的过程,即所谓的主弛豫过程(过程I),是造成Tg的原因;而较快的过程(称为过程II),是由于水分子的重新定向运动。对于其他亲水性水溶液,方法II的介电数据表明存在临界水浓度,在该临界水浓度以上水的流动性受到较小限制。因此,在水溶液上的FTIR-ATR测量表明,随着水浓度的增加,O-H拉伸子带的强度(面积)增加接近3200cm-1。

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