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Cleavage of aryl–ether bonds in lignin model compounds using a Co–Zn-beta catalyst

Efficient cleavage of aryl–ether linkages is a key strategy for generating aromatic chemicals and fuels from lignin. Currently, a popular method to depolymerize native/technical lignin employs a combination of Lewis acid and hydrogenation metal. However, a clear mechanistic understanding of the proc...

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Autores principales: Dou, Xiaomeng, Li, Wenzhi, Zhu, Chaofeng, Jiang, Xiao, Chang, Hou-min, Jameel, Hasan
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9058404/
https://www.ncbi.nlm.nih.gov/pubmed/35519679
http://dx.doi.org/10.1039/d0ra08121c
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author Dou, Xiaomeng
Li, Wenzhi
Zhu, Chaofeng
Jiang, Xiao
Chang, Hou-min
Jameel, Hasan
author_facet Dou, Xiaomeng
Li, Wenzhi
Zhu, Chaofeng
Jiang, Xiao
Chang, Hou-min
Jameel, Hasan
author_sort Dou, Xiaomeng
collection PubMed
description Efficient cleavage of aryl–ether linkages is a key strategy for generating aromatic chemicals and fuels from lignin. Currently, a popular method to depolymerize native/technical lignin employs a combination of Lewis acid and hydrogenation metal. However, a clear mechanistic understanding of the process is lacking. Thus, a more thorough understanding of the mechanism of lignin depolymerization in this system is essential. Herein, we propose a detailed mechanistic study conducted with lignin model compounds (LMC) via a synergistic Co–Zn/Off-Al H-beta catalyst that mirrors the hydrogenolysis process of lignin. The results suggest that the main reaction paths for the phenolic dimers exhibiting α-O-4 and β-O-4 ether linkages are the cleavage of aryl–ether linkages. Particularly, the conversion was readily completed using a Co–Zn/Off-Al H-beta catalyst, but 40% of α-O-4 was converted and β-O-4 did not react in the absence of a catalyst under the same conditions. In addition, it was found that the presence of hydroxyl groups on the side chain, commonly found in native lignin, greatly promotes the cleavage of aryl–ether linkages activated by Zn Lewis acid, which was attributed to the adsorption between Zn and the hydroxyl group. Followed by the cobalt catalyzed hydrogenation reaction, the phenolic dimers are degraded into monomers that maintain aromaticity.
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spelling pubmed-90584042022-05-04 Cleavage of aryl–ether bonds in lignin model compounds using a Co–Zn-beta catalyst Dou, Xiaomeng Li, Wenzhi Zhu, Chaofeng Jiang, Xiao Chang, Hou-min Jameel, Hasan RSC Adv Chemistry Efficient cleavage of aryl–ether linkages is a key strategy for generating aromatic chemicals and fuels from lignin. Currently, a popular method to depolymerize native/technical lignin employs a combination of Lewis acid and hydrogenation metal. However, a clear mechanistic understanding of the process is lacking. Thus, a more thorough understanding of the mechanism of lignin depolymerization in this system is essential. Herein, we propose a detailed mechanistic study conducted with lignin model compounds (LMC) via a synergistic Co–Zn/Off-Al H-beta catalyst that mirrors the hydrogenolysis process of lignin. The results suggest that the main reaction paths for the phenolic dimers exhibiting α-O-4 and β-O-4 ether linkages are the cleavage of aryl–ether linkages. Particularly, the conversion was readily completed using a Co–Zn/Off-Al H-beta catalyst, but 40% of α-O-4 was converted and β-O-4 did not react in the absence of a catalyst under the same conditions. In addition, it was found that the presence of hydroxyl groups on the side chain, commonly found in native lignin, greatly promotes the cleavage of aryl–ether linkages activated by Zn Lewis acid, which was attributed to the adsorption between Zn and the hydroxyl group. Followed by the cobalt catalyzed hydrogenation reaction, the phenolic dimers are degraded into monomers that maintain aromaticity. The Royal Society of Chemistry 2020-12-09 /pmc/articles/PMC9058404/ /pubmed/35519679 http://dx.doi.org/10.1039/d0ra08121c Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Dou, Xiaomeng
Li, Wenzhi
Zhu, Chaofeng
Jiang, Xiao
Chang, Hou-min
Jameel, Hasan
Cleavage of aryl–ether bonds in lignin model compounds using a Co–Zn-beta catalyst
title Cleavage of aryl–ether bonds in lignin model compounds using a Co–Zn-beta catalyst
title_full Cleavage of aryl–ether bonds in lignin model compounds using a Co–Zn-beta catalyst
title_fullStr Cleavage of aryl–ether bonds in lignin model compounds using a Co–Zn-beta catalyst
title_full_unstemmed Cleavage of aryl–ether bonds in lignin model compounds using a Co–Zn-beta catalyst
title_short Cleavage of aryl–ether bonds in lignin model compounds using a Co–Zn-beta catalyst
title_sort cleavage of aryl–ether bonds in lignin model compounds using a co–zn-beta catalyst
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9058404/
https://www.ncbi.nlm.nih.gov/pubmed/35519679
http://dx.doi.org/10.1039/d0ra08121c
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