| Literature DB >> 33730419 |
Dan Wu1,2, Qiyan Wang1,2, Olga V Safonova3, Deizi V Peron2, Wenjuan Zhou1, Zhen Yan1, Maya Marinova4, Andrei Y Khodakov2, Vitaly V Ordomsky2.
Abstract
The cleavage of C-O linkages in aryl ethers in biomass-derived lignin compounds without hydrogenation of the aromatic rings is a major challenge for the production of sustainable mono-aromatics. Conventional strategies over the heterogeneous metal catalysts require the addition of homogeneous base additives causing environmental problems. Herein, we propose a heterogeneous Ru/C catalyst modified by Br atoms for the selective direct cleavage of C-O bonds in diphenyl ether without hydrogenation of aromatic rings reaching the yield of benzene and phenol as high as 90.3 % and increased selectivity to mono-aromatics (97.3 vs. 46.2 % for initial Ru) during depolymerization of lignin. Characterization of the catalyst indicates selective poisoning by Br of terrace sites over Ru nanoparticles, which are active in the hydrogenation of aromatic rings, while the defect sites on the edges and corners remain available and provide higher intrinsic activity in the C-O bond cleavage.Entities:
Keywords: diphenyl ether; electronic effect; heterogeneous catalysis; lignin; selective poisoning
Year: 2021 PMID: 33730419 DOI: 10.1002/anie.202101325
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336