Improved Lignin Conversion to High-Value Aromatic Monomers through Phase Junction CdS with Coexposed Hexagonal (100) and Cubic (220) Facets

Zongyang Yue, Shibo Shao, Jialin Yu, Guanchu Lu, Wenjing Wei, Yi Huang, Kai Zhang, Ke Wang*, Xianfeng Fan*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

Abstract

Photocatalysis has the potential for lignin valorization to generate functionalized aromatic monomers, but its application has been limited by the slow conversion rate and the low selectivity to desirable aromatic products. In this work, we designed the phase junction CdS with coexposed hexagonal (100) and cubic (220) facets to improve the photogenerated charge carriers’ transfer efficiency from (100) facet to (220) facet and the hydrogen transfer efficiency for an enhanced conversion rate of lignin to aromatic monomers. Water is found as a sufficient external hydrogen supplier to increase the yields of aromatic monomers. These innovative designs in the reaction system promoted complete conversion of PP-ol to around 94% of aromatic monomers after 1 h of visible light irradiation, which shows the highest reaction rate and selectivity of target products in comparison with previous works. PP-one is a byproduct from the overoxidation of PP-ol and is usually difficult to be further cleaved to acetophenone and phenol as the desirable aromatic monomers. TEA was first identified in this study as a sacrificial electron donor, a hydrogen source, and a mediator to enhance the cleavage of the Cβ-O bonds in PP-one. With the assistance of TEA, PP-one can be completely cleaved to desirable aromatic monomer products, and the reaction time is reduced from several hours to 10 min of visible light irradiation.

Original languageEnglish
Pages (from-to)29991-30009
Number of pages19
JournalACS Applied Materials and Interfaces
Volume16
Issue number23
Early online date4 Jun 2024
DOIs
Publication statusPublished - 12 Jun 2024

Keywords / Materials (for Non-textual outputs)

  • C−O bonds’ cleavage
  • coexposed hexagonal (100) and cubic (220) facets
  • lignin valorization
  • phase junction cadmium sulfide nanoparticles
  • photocatalysis

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