首页> 外文期刊>Journal of pharmaceutical sciences. >Low frequency dielectric investigations into the relaxation behavior of frozen polyvinylpyrrolidone-water systems.
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Low frequency dielectric investigations into the relaxation behavior of frozen polyvinylpyrrolidone-water systems.

机译:低频电介质研究冷冻聚乙烯吡咯烷酮-水系统的弛豫行为。

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摘要

The low frequency dielectric response of aqueous solutions containing 0, 1, 5, and 10% w/v polyvinylpyrrolidone (PVP) was studied to characterize the low temperature relaxation behavior of these systems. Complementary modulated temperature differential scanning calorimetry (MTDSC) studies allowed measurement of the glass transition temperature for these materials, corresponding to the behavior of the nonfrozen phase. Dielectric investigations in the frequency range of 10(6) to 10(-2) Hz were performed on the systems in the liquid state, with a Maxwell-Wagner response noted for both the PVP solutions and water. The solid-phase responses were studied over a range of temperatures down to -70 degrees C, with a relaxation peak observed for the PVP systems in the kilohertz region. The spectra were modeled using the Havriliak-Negami equation and the corresponding relaxation times were calculated, with a satisfactory fit to the Arrhenius equation noted. The calculated activation energies were similar to literature values for the dielectric relaxation of water. It is suggested that the dielectric response is primarily a reflection of the relaxation behavior of the water molecules in the nonfrozen fraction, thereby indicating that the dielectric technique may yield insights into specific components of frozen aqueous systems.
机译:研究了包含0、1、5和10%w / v聚乙烯吡咯烷酮(PVP)的水溶液的低频介电响应,以表征这些系统的低温松弛行为。补充调制温度差示扫描量热法(MTDSC)研究允许测量这些材料的玻璃化转变温度,与非冷冻相的行为相对应。在液态系统上进行了10(6)到10(-2)Hz频率范围内的介电研究,同时记录了PVP溶液和水的Maxwell-Wagner响应。在低至-70摄氏度的温度范围内研究了固相响应,并在千赫兹区域观察到PVP系统的弛豫峰。使用Havriliak-Negami方程对光谱进行建模,并计算了相应的弛豫时间,并与Arrhenius方程相符。计算出的活化能类似于水介电弛豫的文献值。建议介电响应主要是非冻结级分中水分子弛豫行为的反映,从而表明介电技术可以深入了解冷冻水系统的特定组成部分。

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