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Selective C-O Bond Cleavage of Lignin Systems and Polymers Enabled by Sequential Palladium-Catalyzed Aerobic Oxidation and Visible-Light Photoredox Catalysis

机译:通过顺序钯催化的有氧氧化和可见光的光电催化,通过顺序钯催化的木质素系统和聚合物选择性C-O键切割

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摘要

Lignin, which is a highly cross-linked and irregular biopolymer, is nature's most abundant source of aromatic compounds and constitutes an attractive renewable resource for the production of aromatic commodity chemicals. Herein, we demonstrate a practical and operationally simple two-step degradation approach involving Pd-catalyzed aerobic oxidation and visible-light photoredox-catalyzed reductive fragmentation for the chemoselective cleavage of the beta-O-4 linkage-the predominant linkage in lignin for the generation of lower-molecular-weight aromatic building blocks. The developed strategy affords the beta-O-4 bond cleaved products with high chemoselectivity and in high yields, is amenable to continuous flow processing, operates at ambient temperature and pressure, and is moisture- and oxygen-tolerant.
机译:木质素是一种高度交联和不规则的生物聚合物,是大自然的芳香化合物的最丰富的源泉,并构成了芳香商品化学品的有吸引力的可再生资源。 在此,我们证明了一种实用和操作简单的两步降解方法,涉及PD催化的有氧氧化和可见光的光对毒剂催化的还原碎片,用于β-O-4键的化学选择性切割 - 木质素的主要键入 较低分子量的芳族构建块。 开发的策略提供了β-O-4粘合剂,具有高化学选择性,高产率,可连续流量加工,在环境温度和压力下运行,是水分和氧的。

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