Photocatalytic Lignin Depolymerization and Cross‐Coupling With Alcohols to Produce Unsymmetric Aromatic Diols

H Hongji Li J Jialing Ma (College of Chemistry Zhengzhou University Zhengzhou China) X Xiaoling Wan (College of Chemistry Zhengzhou University Zhengzhou China) Y Yumei Liu (School of Life Sciences, Anhui University) C Chaofeng Zhang (Institutes of Physical Science and Information Technology, School of Materials Science and Engineering, Leibniz International Joint Research Centre of Materials Sciences of Anhui Province) X Xiaoqin Si (School of Chemical Engineering Zhengzhou University Zhengzhou China) X Xiaojun Shen (Department School of Chemical Sciences, State Key Laboratory of Efficient Production of Forest Resources) R Rajenahally V. Jagadeesh (Leibniz-Institut für Katalyse e.V., Albert-Einstein-Str. 29a, 18059 Rostock, Germany)

Abstract

ABSTRACT Conversion of lignin into chemical products typically involves two separate steps, such as depolymerization and subsequent upgrading of monomers, which often require different catalytic systems or varying reaction conditions. Notably, the direct one‐pot conversion of lignin into valuable compounds is crucial for advancing biomass utilization, aiming to streamline production by combining depolymerization and functionalization steps to maximize process‐, atom‐, and cost‐efficiency. Here we report the photocatalytic approach for synchronized depolymerization and C–C coupling processes for the direct conversion of lignin and its derivatives into aromatic diols using CdZnS (Cd 0.3 Zn 0.7 S) catalyst. By coupling hole‐driven radical generation with electron‐driven regeneration of overoxidized benzylic intermediates, this strategy overcomes the intrinsic preference for homocoupling and enables selective cross‐coupling between benzylic and aliphatic alcohol derivatives. This CdZnS‐based photocatalytic process enables simultaneous hydrogen transfer, hydrogenolysis and cross‐coupling of various lignin model compounds with alcohols to obtain unsymmetrical aromatic diols. In the case of real lignin, this depolymerization‐cross‐coupling protocol gives corresponding aromatic diols up to 10 wt% monomer yield. The resulting diol products are directly applicable to the synthesis of thermoplastic polyurethanes (TPUs) as well as fused polycyclic frameworks, functional materials, and bioactive molecules.

Article Details

Volume / Issue Vol. 65, Issue 32
Published August 03, 2026
ISSN 1433-7851
Publisher Wiley

Journal Info

Angewandte Chemie International Edition

Wiley

ISSN: 1433-7851 Physical Sciences

Authors (8)

H

Hongji Li

J

Jialing Ma

College of Chemistry Zhengzhou University Zhengzhou China

X

Xiaoling Wan

College of Chemistry Zhengzhou University Zhengzhou China

Y

Yumei Liu

School of Life Sciences, Anhui University

C

Chaofeng Zhang

Institutes of Physical Science and Information Technology, School of Materials Science and Engineering, Leibniz International Joint Research Centre of Materials Sciences of Anhui Province

X

Xiaoqin Si

School of Chemical Engineering Zhengzhou University Zhengzhou China

X

Xiaojun Shen

Department School of Chemical Sciences, State Key Laboratory of Efficient Production of Forest Resources

R

Rajenahally V. Jagadeesh

Leibniz-Institut für Katalyse e.V., Albert-Einstein-Str. 29a, 18059 Rostock, Germany