Di Mino Camilla, Seel Andrew G, Clancy Adam J, Headen Thomas F, Földes Támas, Rosta Edina, Sella Andrea, Skipper Neal T
Department of Physics and Astronomy, University College London, London, WC1E 6BT, UK.
ISIS Neutron and Muon Source, Science and Technology Facilities Council, Rutherford Appleton Laboratory, Didcot, OX11 0QX, UK.
Nat Commun. 2023 Sep 22;14(1):5900. doi: 10.1038/s41467-023-41451-y.
Weak hydrogen bonds, such as O-H···π and C-H···O, are thought to direct biochemical assembly, molecular recognition, and chemical selectivity but are seldom observed in solution. We have used neutron diffraction combined with H/D isotopic substitution to obtain a detailed spatial and orientational picture of the structure of benzene-methanol mixtures. Our analysis reveals that methanol fully solvates and surrounds each benzene molecule. The expected O-H···π interaction is highly localised and directional, with the methanol hydroxyl bond aligned normal to the aromatic plane and the hydrogen at a distance of 2.30 Å from the ring centroid. Simultaneously, the tendency of methanol to form chain and cyclic motifs in the bulk liquid is manifest in a highly templated solvation structure in the plane of the ring. The methanol molecules surround the benzene so that the O-H bonds are coplanar with the aromatic ring while the oxygens interact with C-H groups through simultaneous bifurcated hydrogen bonds. This demonstrates that weak hydrogen bonding can modulate existing stronger interactions to give rise to highly ordered cooperative structural motifs that persist in the liquid phase.
弱氢键,如O-H···π和C-H···O,被认为在生物化学组装、分子识别和化学选择性中起指导作用,但在溶液中很少被观察到。我们利用中子衍射结合H/D同位素取代,获得了苯-甲醇混合物结构的详细空间和取向图像。我们的分析表明,甲醇完全溶剂化并包围每个苯分子。预期的O-H···π相互作用高度局部化且具有方向性,甲醇羟基键垂直于芳香平面排列,氢原子与环中心的距离为2.30 Å。同时,甲醇在本体液体中形成链状和环状结构单元的趋势在环平面内高度规整的溶剂化结构中得以体现。甲醇分子围绕苯排列,使得O-H键与芳香环共面,而氧原子通过同时存在的分叉氢键与C-H基团相互作用。这表明弱氢键可以调节现有的较强相互作用,从而产生在液相中持续存在的高度有序的协同结构单元。