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Energetics of water permeation through fullerene membrane

机译:富勒烯膜透水的能量学

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Lipid bilayer membranes are important as fundamental structures in biology and possess characteristic water-permeability, stability, and mechanical properties. Water permeation through a lipid bilayer membrane occurs readily, and more readily at higher temperature, which is largely due to an enthalpy cost of the liquid-to-gas phase transition of water. A fullerene bilayer membrane formed by dissolution of a water-soluble fullerene, Ph_5C_(60)K, has now been shown to possess properties entirely different from those of the lipid membranes. The fullerene membrane is several orders of magnitude less permeable to water than a lipid membrane, and the permeability decreases at higher temperature. Water permeation is burdened by a very large entropy loss and may be favored slightly by an enthalpy gain, which is contrary to the energetics observed for the lipid membrane. We ascribe this energetics to favorable interactions of water molecules to the surface of the fullerene molecules as they pass through the clefts of the rigid fullerene bilayer. The findings provide possibilities of membrane design in science and technology.
机译:脂质双层膜作为生物学中的基本结构很重要,并具有特征性的水渗透性,稳定性和机械性能。通过脂质双层膜的水的渗透容易发生,并且在较高的温度下更容易发生,这主要是由于水的液相到气相转变的焓成本所致。现在已经显示出通过溶解水溶性富勒烯Ph_5C_(60)K形成的富勒烯双层膜具有与脂质膜完全不同的特性。富勒烯膜对水的渗透性比脂质膜低几个数量级,并且在较高温度下渗透性降低。很大的熵损失加重了水的渗透,而焓增加可能略微有利于水的渗透,这与对脂质膜观察到的能量学相反。我们将这种能量学归因于水分子通过刚性富勒烯双层裂口时与富勒烯分子表面的良好相互作用。这些发现为科学技术中的膜设计提供了可能性。

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