A Mussel-Inspired Chitosan-Based Wood Adhesive with Boiling-Water Resistance and Flame Retardancy

Abstract Traditional biomass-based adhesives often suffer from low strength, poor boiling-water resistance, and limited functionality. In this study, inspired by the catechol-containing mussel byssal proteins, we developed a chitosan-based adhesive using chitosan (CS), tannic acid (TA), and Fe3+. Hydrogen bonding and metal coordination among CS, TA, and Fe3+ enhance the cross-linked network, thereby improving the adhesion performance, with a boiling-water shear strength of 1.40 MPa. Notably, the Limiting Oxygen Index (LOI) of poplar veneer treated with the CS-TA-Fe3+ adhesive was 29.70%, meeting the standards for flame-retardant materials. These results demonstrate the simultaneous enhancement of adhesion and flame retardancy, highlighting the potential of this system as a sustainable, multifunctional adhesive for construction and automotive applications.

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Publication Details

Journal
ACS Sustainable Chemistry & Engineering
Published
2026-10-09
DOI
https://doi.org/10.1021/acssuschemeng.6c10362
Primary Topic
Wood Treatment and Properties
Type
article
Field-Weighted Citation Impact
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article

A Mussel-Inspired Chitosan-Based Wood Adhesive with Boiling-Water Resistance and Flame Retardancy

Yuqi Zhu, Shaoliang Xiao, Jian Li, Liangxian Liu et al.
ACS Sustainable Chemistry & Engineering
Wood Treatment and Properties
article

A Mussel-Inspired Chitosan-Based Wood Adhesive with Boiling-Water Resistance and Flame Retardancy

Yuqi Zhu, Shaoliang Xiao, Jian Li, Liangxian Liu, Yuyan Jiang, Yijun Zong, Ming Wei, Xidie Liu
article en

Abstract

Abstract Traditional biomass-based adhesives often suffer from low strength, poor boiling-water resistance, and limited functionality. In this study, inspired by the catechol-containing mussel byssal proteins, we developed a chitosan-based adhesive using chitosan (CS), tannic acid (TA), and Fe3+. Hydrogen bonding and metal coordination among CS, TA, and Fe3+ enhance the cross-linked network, thereby improving the adhesion performance, with a boiling-water shear strength of 1.40 MPa. Notably, the Limiting Oxygen Index (LOI) of poplar veneer treated with the CS-TA-Fe3+ adhesive was 29.70%, meeting the standards for flame-retardant materials. These results demonstrate the simultaneous enhancement of adhesion and flame retardancy, highlighting the potential of this system as a sustainable, multifunctional adhesive for construction and automotive applications.

ACS Sustainable Chemistry & Engineering
Northeast Forestry University (CN)
Openalex Percentile: Top 15%
Wood Treatment and Properties
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A Mussel-Inspired Chitosan-Based Wood Adhesive with Boiling-Water Resistance and Flame Retardancy — Yuqi Zhu, Shaoliang Xiao, et al. · ACS Sustainable Chemistry & Engineering (2026) | TGRS Research Map | TGRS