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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Dynamics of Linear Poly(N-isopropylacryiamide) in Water around the Phase Transition Investigated by Dielectric Relaxation Spectroscopy
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Dynamics of Linear Poly(N-isopropylacryiamide) in Water around the Phase Transition Investigated by Dielectric Relaxation Spectroscopy

机译:介电弛豫谱研究相变周围水中线性聚N-异丙基丙烯酰胺的动力学

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The molecular dynamics of linear poly(N-isopropylacrylamide) (pNIPAM) in aqueous media at temperatures below and above the lower critical solution temperature (LCST) are investigated using broadband dielectric relaxation spectroscopy in a frequency range from 10~(-1) to 10~(11) Hz. Below the LCST, two relaxation processes are observed in the megahertz and gigahertz region assigned to the reorientation of dipoles of the solvated polymer segments (p- process) and water molecules (w-process), respectively. Both relaxation processes are analyzed using the Havriliak-Negami (HN) function, taking special attention to the w-process. Above the LCST, the dielectric spectra of the pNIPAM solutions resemble that of pure water, showing only the high frequency relaxation process of the water molecules with a more or less Debye-type behavior. The non-Debye behavior of the w-process below the LCST is mainly induced by the interactions between water and pNIPAM chains via hydrogen bonding. The relaxation time and strength of the w-process is studied with dependence on the concentration, temperature, and the polymer chain length (molecular weight). The information obtained is useful for a deeper understanding of the dehydration behavior at the phase transition. The suggestion of dehydration of the pNIPAM chains at the LCST is confirmed by calculating a dehydration number.
机译:使用宽带介电弛豫光谱法在10〜(-1)至10的频率范围内研究了低于和高于下临界溶液温度(LCST)的温度下水性介质中线性聚N-异丙基丙烯酰胺(pNIPAM)的分子动力学约(11)Hz在LCST以下,在兆赫兹和千兆赫兹区域观察到两个松弛过程,分别对应于溶剂化聚合物链段的偶极子的重取向(p过程)和水分子的偶极子取向(w过程)。使用Havriliak-Negami(HN)函数分析这两个弛豫过程,尤其要注意w过程。在LCST上方,pNIPAM溶液的介电谱类似于纯水的介电谱,仅显示具有或多或少德拜型行为的水分子的高频弛豫过程。 LCST下w过程的非德拜行为主要是由水和pNIPAM链之间通过氢键相互作用引起的。根据浓度,温度和聚合物链长(分子量),研究了w-过程的弛豫时间和强度。获得的信息对于更深入地了解相变时的脱水行为很有用。通过计算脱水数证实了LCST中pNIPAM链的脱水的建议。

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