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首页> 外文期刊>The journal of physical chemistry, B. Condensed matter, materials, surfaces, interfaces & biophysical >Probing the Distribution of Water Molecules Hydrating Lipid Membranes with Ultrafast Forster Vibrational Energy Transfer
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Probing the Distribution of Water Molecules Hydrating Lipid Membranes with Ultrafast Forster Vibrational Energy Transfer

机译:用超快Forster振动能量转移探究水化脂质膜的水分子的分布

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摘要

We determine the relative positioning of water molecules in l,2-dioleoyl-sn-glycero-3-phosphocholine (DOPC) membranes by measuring the rate of vibrational resonant (Forster) energy transfer between the water hydroxyl stretch vibrations. The rate of Forster energy transfer is strongly distance dependent and thus gives detailed information on the relative positioning of the water molecules. We determine the rate of intermolecular Forster energy by measuring the anisotropy dynamics of excited O-D stretch vibrations of HDO and D2O molecules with polarization-resolved femtosecond mid-infrared spectroscopy. We study the dynamics for deuterium fractions between 0.1 and 1 and for hydration levels between 2 and 12 water molecules per DOPC lipid molecule. We find that most of the water molecules hydrating the membrane are contained in nanoclusters and have an average intermolecular distance of 3.4 A. The density of these nanociusters increases with increasing hydration level of the DOPC membranes.
机译:我们通过测量水羟基拉伸振动之间的振动共振(Forster)能量转移速率,确定水分子在1,2-二油酰基-sn-甘油-3-磷酸胆碱(DOPC)膜中的相对位置。福斯特能量转移的速率与距离密切相关,因此可以提供有关水分子相对位置的详细信息。我们通过用偏振分辨飞秒中红外光谱测量HDO和D2O分子的激发O-D拉伸振动的各向异性动力学来确定分子间Forster能量的速率。我们研究了每个DOPC脂质分子中氘分数在0.1和1之间以及水合水平在2和12个水分子之间的动力学。我们发现,水合膜的大多数水分子都包含在纳米簇中,平均分子间距离为3.4A。这些纳米簇的密度随DOPC膜水化程度的增加而增加。

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