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Sustainable allylation of organosolv lignin with diallyl carbonate and detailed structural characterization of modified lignin

机译:有机溶剂木质素与碳酸二烯丙酯的可持续烯丙基化反应及改性木质素的详细结构表征

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摘要

The allylation of European beech wood organosolv lignin (OL) with diallyl carbonate (DAC) in the presence of base catalysts is shown to be an efficient, non-toxic, and sustainable modification technique. Comparative studies of different bases and temperatures were performed to optimize the solvent-free allylation of OL. Up to 90% of the aromatic and aliphatic hydroxyl groups in OL were converted to the respective allyl ethers or allyl carbonates using tetrabutylammonium bromide (TBAB) as recyclable base. The demonstrated strategy allows the introduction of functional groups into the structure of lignin, which will enable further modification. Detailed structural analytics by P-31, H-1, and C-13 NMR, as well as IR spectroscopy and detailed mass analysis using SEC-ESI-MS verified the functionalization and delivered insights into the structure of lignin.
机译:在碱催化剂的存在下,欧洲山毛榉木材有机溶剂木质素(OL)与碳酸二烯丙酯(DAC)的烯丙基化是一种有效,无毒且可持续的改性技术。进行了不同碱和温度的比较研究,以优化OL的无溶剂烯丙基化。使用四丁基溴化铵(TBAB)作为可循环碱,将OL中多达90%的芳族和脂族羟基转化为相应的烯丙基醚或碳酸烯丙酯。所展示的策略允许将官能团引入木质素的结构,这将使进一步的修饰成为可能。通过P-31,H-1和C-13 NMR进行的详细结构分析以及IR光谱和使用SEC-ESI-MS进行的详细质量分析验证了功能化并提供了木质素结构的见解。

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