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Molecular Dynamics Study ofthe Mechanismof Cellulose Dissolution in the Ionic Liquidl-/f-Butyl-3-methyIimidazolium Chloride

机译:离子液 - / F-丁基-3-甲基咪唑氯化物中纤维素溶解机理的分子动力学研究

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7V,Af-DialkylimidazoIium ionic liquids (ILs) show promise as non-derivatizing 'green' solvents for the dissolution and processing of cellulose. To better understand how these ILs solvate this and other polysaccharides at the molecular level, we have performed molecular dynamics (MD) simulations of neat l-n-butyl-3-methylimidazolium chloride ([C4mim]Cl) at 298, 313, 333, 343, 353, 363, and 373 K, as well as 5 and 10 wt% cellobiose solutions in [C4mim]Cl at 363 K. Static, dynamic, and thermodynamic quantities have been derived from the collected data. Our findings agree well with experimental data from various sources. In particular, analysis of structural features and hydrogen bonding patterns between [C4mim]Cl and cellobiose are consistent with results from NMR relaxation studies which indicate that the IL Cl" ions interact with the carbohydrate OH groups in a ~ 1:1 ratio.
机译:7V,AF-二烷基咪唑离子液体(ILS)显示出作为非衍生'绿色'溶剂的承诺,用于溶解和加工纤维素。为了更好地了解这些ILS如何在分子水平下溶剂化物质和其他多糖,我们在298,313,333,343处进行了纯Ln-丁基-3-甲基-3-甲基咪唑([C4mim] Cl)的分子动力学(MD)模拟, 353,363和373k,以及363k的[C4mim] Cl中的5和10wt%的纤维二糖溶液,静态,动态和热力学量来自收集的数据。我们的调查结果与来自各种来源的实验数据很好。特别地,[C4mim] Cl和Cellobiose之间的结构特征和氢键图案的分析与NMR弛豫研究的结果一致,表明IL Cl“离子与氧化碳水化合物OH基团在〜1:1的比例中相互作用。

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