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Dielectric and Calorimetric Studies of Hydrated Purple Membrane

机译:水合紫色膜的介电和量热研究

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摘要

Purple membranes (PM) from halobacteria were hydrated to ∼0.4 and ∼0.2 g H2O/g of PM and studied by dielectric spectroscopy and differential scanning calorimetry between 120 and 300 K. The dielectric process, attributed to a local (β) relaxation of the confined supercooled water, shows an Arrhenius temperature behavior at low temperatures. In the case of the most hydrated PM a small deviation from the Arrhenius behavior occurs at 190–200 K together with a pronounced endothermic process and an increased activation energy. The observed crossover is accompanied by a reduction of the interlayer spacing due to the partial loss of the intermembrane water. All these effects at ∼200 K are consistent with a scenario where the local relaxation process merges with a nonobservable α-relaxation of the interlayer water, giving rise to a more liquid-like behavior of the interfacial water. For the less hydrated sample the effects are less pronounced and shift to a slightly higher temperature.
机译:将卤化细菌的紫色膜(PM)水合至〜0.4和〜0.2 g H2O / g PM,并通过介电谱和差示扫描量热法研究120至300 K之间的介电过程。受限的过冷水在低温下表现出Arrhenius温度行为。对于水分含量最高的PM,在190–200 K时会发生与Arrhenius行为的小偏差,同时伴有明显的吸热过程和增加的活化能。由于膜间水的部分损失,观察到的交叉伴随着夹层间距的减小。在〜200 K时的所有这些效果与局部松弛过程与层间水的不可观察到的α松弛相融合的情况是一致的,从而引起了界面水更像液体的行为。对于水合程度较低的样品,效果不太明显,并转移到稍高的温度。

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