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首页> 外文期刊>Physical chemistry chemical physics: PCCP >Hydrophilic and hydrophobic interactions in concentrated aqueous imidazole solutions: a neutron diffraction and total X-ray scattering study
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Hydrophilic and hydrophobic interactions in concentrated aqueous imidazole solutions: a neutron diffraction and total X-ray scattering study

机译:浓缩含水咪唑水溶液中的亲水和疏水相互作用:中子衍射和总X射线散射研究

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The intermolecular interactions in concentrated (5 M) aqueous imidazole solutions have been investigated by combining neutron diffraction with isotopic substitution, total X-ray scattering and empirical potential structure refinement (EPSR) simulations using a box containing 5530 water and 500 imidazole molecules. The structural model with the best fit was used to generate radial distribution functions and spatial density functions. The local volume surrounding imidazole molecules is dominated by water, due to strong hydrogen-bonding between the nitrogen moieties of imidazole and water molecules; within a radius of 6.4 angstrom from the central imidazole molecule there are, on average, 17 water and only 3 imidazole molecules. Even though imidazole interacts with water it appears to disrupt hydrogen bonding in the surrounding water network only minimally. Hydrogen-bonding between imidazole molecules is negligible. The most probable positions of imidazole nearest-neighbours are above and below the plane of the aromatic ring. At low distances (up to similar to 3.5-3.8 angstrom) these nearest neighbours were found to prefer parallel orientation of the molecular planes, indicating hydrophobic (pi-pi) stacking. At longer distances (up to similar to 5 angstrom), imidazole neighbours assume both parallel and edge-to-face orientations. Overall, hydrated imidazole molecules are the most probable structural motif in aqueous solutions, with very few direct imidazole-imidazole interactions.
机译:通过将中子衍射与同位素取代,总X射线散射和经验潜在的结构细化(EPSR)模拟组合,使用含有5530水和500咪唑分子的盒子来研究浓缩(5M)水性咪唑水溶液中的分子间相互作用。具有最佳拟合的结构模型用于产生径向分布函数和空间密度函数。亚咪唑分子周围的局部体积由水支配,由于咪唑和水分子的氮部分之间的强氢键合;在中央咪唑分子的半径为6.4埃的半径内,平均为17个水和仅3咪唑分子。尽管咪唑与水相互作用,但它似乎仅在周围的水网络中扰乱了氢键合。咪唑分子之间的氢键可忽略不计。咪唑最近邻居的最可能位置在芳环的平面之上和下方。在低距离(最高可达3.5-3.8埃)下,发现这些最接近的邻居更喜欢分子平面的平行取向,表明疏水性(PI-PI)堆叠。在更长的距离(最高到5埃类似)时,咪唑邻居假设并行和边缘面向方向。总体而言,水溶性咪唑分子是水溶液中最可能的结构基质,具有极少的直接咪唑 - 咪唑相互作用。

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