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Toward the Photocatalytic Valorization of Lignin: Conversion of a Model Lignin Hexamer with Multiple Functionalities. | LitMetric

Toward the Photocatalytic Valorization of Lignin: Conversion of a Model Lignin Hexamer with Multiple Functionalities.

ACS Sustain Chem Eng

School of Chemistry and Chemical Engineering, Queen's University Belfast, David Keir Building, Stranmillis Road, Belfast BT9 5AG, U.K.

Published: September 2022

AI Article Synopsis

  • * A study was conducted using titanium dioxide (TiO) to degrade a hexameric lignin model compound with multiple linkages, revealing partial cleavage of certain linkages while others remained intact.
  • * The research also involved synthesizing a dimeric compound with a biphenyl linkage to better understand the degradation process, proposing intermediates and pathways based on the findings.

Article Abstract

The valorization of biomass via photocatalysis is an area of expanding research with advances in new technologies and materials with a view toward enhanced sustainability being reported. A significant challenge within this field, however, is understanding the impact photocatalysis has on more recalcitrant compounds present in biomass, such as lignin. Moreover, the current state of lignin model compound research is still largely focused on the breakdown of small models containing typically only one linkage. Described herein is the use of TiO-mediated photocatalysis for the degradation of a representative hexameric lignin model compound which contains multiple linkages (e.g., 5-5', β-5, and β-O-4). The results revealed that while cleavage of the β-5 and β-O-4 occurred, the 5-5' appeared to remain intact within the identified reaction intermediates. To understand some of the more fundamental questions, a dimeric compound with a biphenyl linkage was synthesized and studied under photocatalytic conditions. The proposal of intermediates and pathways of degradation based on the studies conducted is presented and discussed herein.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC9490757PMC
http://dx.doi.org/10.1021/acssuschemeng.2c01606DOI Listing

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