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Acoustic and volumetric studies of intermolecular interactions in dilute solutions of methanol in aromatic amines

机译:甲醇在芳香胺中的稀溶液中分子间相互作用的声学和体积研究

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Limiting partial compressibilities and volumes of methanol in pyridine, 2-methylpyridine, 3-methylpyridine, 4-methylpyridine and 2,6-dimethylpyridine were calculated frorn the experimental speeds of sounds and densities of dilute solutions at 298.15 K. The limiting functions were found to be linearly correlated with the association energies of isolated 1: 1 complexes of the pyridine derivatives with water. Those association energies are close to the energies for similar complexes with methanol. The results evidence that ortho effect enhances the ability of pyridines to hydrogen bonding with methanol in the same way as with water. The effect consist in changes of hydrogen bond energy, unspecific interactions with a steric hindrance, e.g. between hydrocarbon tail of the alcohol molecule and the methyl group in the ring, and changes in resonance interactions. Stronger hydrogen bonds cause smaller partial molar compressibilities and volumes of the solute, as well as greater negative enthalpies of solution. Importantly, single molecule of water or methanol forms one hydrogen bond with the proton-accepting solvent.
机译:在298.15 K的声速和稀溶液密度的实验速度下,计算了吡啶,2-甲基吡啶,3-甲基吡啶,4-甲基吡啶和2,6-二甲基吡啶中甲醇的极限部分可压缩性和体积。与吡啶衍生物与水的分离的1:1配合物的缔合能线性相关。这些缔合能接近于与甲醇类似的配合物的能。结果证明邻位效应以与水相同的方式增强了吡啶与甲醇的氢键结合能力。该作用包括氢键能的变化,具有位阻的非特异性相互作用,例如氢键。醇分子的烃尾与环中的甲基之间的相互作用,以及共振相互作用的变化。较强的氢键会导致较小的部分摩尔可压缩性和溶质体积,以及较大的溶液负焓。重要的是,水或甲醇的单分子与质子接受溶剂形成一个氢键。

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