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A DFT study on lignin dissolution in imidazolium-based ionic liquids

机译:DFT研究木质素在咪唑基离子液体中的溶解

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Density functional theory (DFT), atoms in molecules (AIM) theory, natural bond orbital (NBO) analysis, and reduced density gradient (RDG) analysis were employed to investigate the mechanism of lignin dissolution in imidazolium-based ionic liquids (ILs). Lignin was modeled with guaiacyl glycerol-β-guaiacyl ether (GG), which is one type of β-O-4 linked dimers. Hydrogen bonds (H-bonds) are studied specifically and characterized by different methods to evaluate the strength of interaction between ILs and the lignin model compound. From the theoretical results, it is observed that H-bonds between anions and the GG model are stronger than those between cations and the GG model. Also, anions have the strongest interaction at the α-OH position of GG, while cations have the strongest interaction at the γ-OH position of GG. In addition, anions Cl, OAc and MeSO4 have much stronger H-bonding ability than PF6, and the length of the alkyl chain does not have a significant influence on the cation–GG interaction. This work also simulates the interaction between the GG model and ion pairs, with the results suggesting that anions in ion pairs play a key role in forming H-bonds, and cations have a π-stacking interaction with GG. The calculation data provide the interaction mechanism of lignin dissolution in ILs to some extent.
机译:密度泛函理论(DFT),分子中原子(AIM)理论,自然键轨道(NBO)分析和还原密度梯度(RDG)分析被用来研究木质素在咪唑基离子液体(ILs)中的溶解机理。木质素是用愈创木脂甘油-β-愈创木脂醚(GG)建模的,该物质是一种与β- O -4连接的二聚体。对氢键(H键)进行了专门研究,并通过不同的方法对其进行了表征,以评估IL与木质素模型化合物之间相互作用的强度。从理论结果可以看出,阴离子与GG模型之间的氢键比阳离子与GG模型之间的氢键强。同样,阴离子在GG的α -OH位置具有最强的相互作用,而阳离子在GG的γ -OH位置具有最强的相互作用。此外,Cl,OAc和MeSO 4 的氢键能力比PF 6 的强。烷基链的长度对阳离子-GG的相互作用没有显着影响。这项工作还模拟了GG模型与离子对之间的相互作用,结果表明离子对中的阴离子在形成氢键中起关键作用,而阳离子与GG具有π堆积相互作用。计算数据在一定程度上提供了木质素在白介素中的相互作用机理。

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