首页> 外文期刊>Journal of Molecular Liquids >Local structure and translational dynamics of NMF (N-methylformamide)-DMF (N,N-dimethylformamide) mixtures, via molecular dynamics simulation
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Local structure and translational dynamics of NMF (N-methylformamide)-DMF (N,N-dimethylformamide) mixtures, via molecular dynamics simulation

机译:NMF(N-甲基甲酰胺)-DMF(N,N-二甲基甲酰胺)混合物的局部结构和平移动力学,通过分子动力学模拟

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In this work, the liquid amide mixture of N-methylformamide (NMF) with N,N-dimethylformamide (DMF) has been investigated by means of the molecular dynamics simulation method. The intermolecular structure and local mole fractions around any kind of the component molecules have been studied in terms of the calculated site-site correlation functions at three solvent compositions, X-DMF, and ambient conditions. The hydrogen bonding network of the system has been extensively explored and the several hydrogen bond types formed between NMF-NMF, DMF-DMF and NMF-DMF in each mixture per molecule have been obtained with increasing X-DMF. The results obtained reveal the notable effect of DMF molecules upon the formation of the hydrogen bonding network in each system. The investigated diffusion coefficients of both mixture components show clearly a linear increase of the diffusivity of all molecules while the DMF fraction increases. The intermolecular structure and hydrogen bonding properties studied validate the results from previous small angle neutron scattering studies on the system and support their conclusion that this amide mixture may be considered as an almost ideal one. Also, it may be concluded that DMF does not self-aggregate, because it acts as a hydrogen-bond breaker over the whole range of solvent composition. This finding is in accordance with the translational diffusive behavior of the molecules in the mixtures mentioned above. The detailed analysis of the hydrogen bonding network in DMF- rich and NMF-rich mixtures has revealed important information regarding the short range molecular aggregation in these diluted mixtures. This result is in general found to be comparable with corresponding predictions from previous experimental low-frequency raman spectroscopic studies of these mixtures. (C) 2016 Elsevier B.V. All rights reserved.
机译:在这项工作中,通过分子动力学模拟方法研究了N-甲基甲酰胺(NMF)与N,N-二甲基甲酰胺(DMF)的液态酰胺混合物。在三种溶剂组合物,X-DMF和环境条件下,已经研究了任何种类分子周的分子间结构和局部摩尔级分。已经广泛探索了系统的氢键网络,并且通过增加X-DMF获得了每分子的每种混合物中的NMF-NMF,DMF-DMF和NMF-DMF之间形成的几种氢键类型。得到的结果揭示了DMF分子在每个系统中形成氢键网络时的显着效果。两种混合物组分的研究分散系数显然显示了所有分子的扩散性的线性增加,而DMF分数增加。研究了分子间结构和氢键特性验证了对系统的先前小角度中子散射研究的结果,并支持他们的结论,即该酰胺混合物可以被认为是几乎理想的混合物。而且,可以得出结论,DMF不自聚集,因为它在整个溶剂组合物上用作氢键断路器。该发现符合上述混合物中分子的平移扩散行为。 DMF-富含NMF和NMF的混合物中氢键网络的详细分析揭示了关于这些稀释的混合物中的短范围分子聚集的重要信息。本结果通常发现与来自先前实验性低频拉曼光谱研究的相应预测相当。 (c)2016 Elsevier B.v.保留所有权利。

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