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Selective oxidative depolymerization of lignin into aromatic monomers . . . Although pretreatment strategies to block C α -OH have been widely studied, methods for efficient oxidative depolymerization remain limited Herein, we propose a polyoxometalate (POM)-based catalytic approach under mild conditions (150 °C, 1 MPa O₂) to address this challenge
Polyoxometalate as an Effective Catalyst for Catalytic Lignin into . . . Recently, numerous catalytic strategies for lignin valorization have been explored Polyoxometalates (POMs), with their distinctive structures enabling control of redox processes in lignin conversion, have been of particular interest
Bimetallic polyoxometalates catalysts for efficient lignin . . . However, the efficient depolymerization of lignin into these compounds remains a formidable challenge Here, we present a promising solution by harnessing polyoxometalates (POMs) catalysts, which exhibit improved catalytic performance and selectivity
Enhanced Oxidative Depolymerization of Lignin through the Synergistic . . . The synergy between polyoxometalate catalysts and acetic acid not only exemplifies the potential for improved catalyst design but also highlights a promising strategy for the sustainable transformation of lignin into valuable chemical products
Research progress on catalytic oxidative depolymerization of lignin by . . . From the structure of lignin,this article summarizes and discusses the research progress in the direction of lignin depolymerization in recent years,especially the studies on polyoxometalates in the catalytic oxidative depolymerization of lignin It also puts forward views on the future application prospects of lignin and the problems that need