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Understanding interactions between lignin and ionic liquids with experimental and theoretical studies during catalytic depolymerisation

机译:了解木质素与离子液体与催化解聚中的实验性和理论研究相互作用

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摘要

Compared to H2SO4, Bronsted acidic ionic liquid (BAIL, [C3SO3HMIM][HSO4]) catalyzed depolymerization of lignin yielded higher concentration of low molecular weight products under mild conditions (120 degrees C) as proven by GC and GC-MS. To comprehend this disparity in catalytic activity among H2SO4 and BAIL (at similar H+ concentration), experimental techniques [1D(H-1) NMR, 2D(N-15/H-1 HMBC) NMR and RAMAN] have been employed. Based on these studies, it has been proven that the transfer of electron density from substrate to the electron deficient imidazolium ring via formation of hydrogen bond between -OH/OCH3 (substrate) and -N1C2H2N3-(cation) is possible, while the anion plays an important role. Further, density functional theory (DFT) calculations also corroborated this fact by showing a change in the bond angle and decrease in bond length (C-2-H-2 in imidazole), due to the presence of weak and strong hydrogen bonding between the substrate and IL.
机译:与H2SO4相比,Bronsted酸性离子液体(BAIL、[C3SO3HMIM][HSO4])催化木质素解聚在温和条件下(120摄氏度)产生了更高浓度的低分子量产物,这已被GC和GC-MS证明。为了理解H2SO4和BAIL(在类似H+浓度下)催化活性的差异,采用了实验技术[1D(H-1)NMR、2D(N-15/H-1 HMBC)NMR和拉曼光谱]。基于这些研究,已经证明,通过在-OH/OCH3(底物)和-N1C2H2N3(阳离子)之间形成氢键,电子密度从底物转移到缺电子咪唑环是可能的,而阴离子起着重要作用。此外,密度泛函理论(DFT)计算也证实了这一事实,它显示了键角的变化和键长的减少(咪唑中的C-2-H-2),这是由于基底和IL之间存在弱氢键和强氢键。

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