Wang Yueqing, Chen Mingjie, Yang Yang, Ralph John, Pan Xuejun
Department of Biological Systems Engineering, University of Wisconsin-Madison 460 Henry Mall Madison WI 53706 USA
Wisconsin Energy Institute, University of Wisconsin-Madison 1552 University Avenue Madison WI 53726 USA.
RSC Adv. 2023 Feb 17;13(9):5925-5932. doi: 10.1039/d3ra00245d. eCollection 2023 Feb 14.
Lignin is a potential feedstock to produce renewable aromatic chemicals. However, lignin-derived aromatics are heavily methoxylated, which affects their reactivity in some downstream valorization attempts. Herein, we report an efficient method for the demethylation of the aromatics derived from lignin depolymerization using acidic concentrated lithium bromide (ACLB) under moderate conditions (, 1.5 M HCl, 110 °C, and 2 h). Aromatics with one or two methoxy groups (G-type and S-type), alkyl hydroxyl and carbonyl groups, and electron-donating and electron-withdrawing substituents were used to investigate the demethylation mechanisms. S-type aromatics were demethylated faster than their G-type analogs. Alkyl hydroxyl groups were brominated under the conditions. Carbonyl groups (aldehydes and ketones) promoted unwelcome condensation. Electron-donating substituents promoted demethylation, whereas electron-withdrawing substituents retarded the demethylation. An -carboxylic group enhanced the demethylation because of the formation of a stable intermediate.
木质素是生产可再生芳香族化学品的潜在原料。然而,木质素衍生的芳烃含有大量甲氧基,这在一些下游增值尝试中会影响其反应活性。在此,我们报道了一种在温和条件下(1.5 M盐酸、110 °C和2小时)使用酸性浓溴化锂(ACLB)对木质素解聚衍生的芳烃进行脱甲基的有效方法。使用具有一个或两个甲氧基的芳烃(G型和S型)、烷基羟基和羰基以及供电子和吸电子取代基来研究脱甲基机理。S型芳烃的脱甲基速度比其G型类似物快。在此条件下烷基羟基会被溴化。羰基(醛和酮)会促进不良缩合反应。供电子取代基促进脱甲基,而吸电子取代基则阻碍脱甲基。一个羧基由于形成稳定的中间体而增强了脱甲基作用。