Lignin/Fe 3+ Coordination Networks via PDA/PEI Co‐Deposition: A Green Strategy for Multifunctional Coatings

ABSTRACT Mechanical components made of aluminum suffer from severe friction, wear, biofouling, and corrosion, yet existing coatings often fail to maintain stable tribological performance under cyclic loading. In this study, a nature‐inspired multifunctional coating was fabricated on aluminum via co‐deposition of lignin, Fe 3+ , dopamine, and polyethyleneimine (PEI). The Fe 3+ ions coordinate with phenolic hydroxyl groups in lignin while simultaneously participating in Michael addition and Schiff‐base reactions with DA and PEI, forming a dense crosslinked network. With an optimal lignin content of 5 wt% (L 5 /DA/PEI), the coating exhibits a significantly reduced coefficient of friction (0.43–0.46) and superior wear resistance, attributed to the lubricating boundary film formed by oxygen‐containing groups in lignin. The same coating also demonstrates outstanding adhesion (96.97% residual area) and excellent corrosion resistance in 3.5% NaCl solution. Meanwhile, the coating with 10 wt% lignin (L 10 /DA/PEI) displays remarkable antimicrobial activity against both Staphylococcus aureus and Escherichia coli , benefiting from enhanced Fenton‐like reactions that generate toxic hydroxyl radicals. The findings open new avenues for designing eco‐friendly, multifunctional protective surfaces for durable aluminum components under complex service environments.

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Publication Details

Journal
Surface and Interface Analysis
Published
2026-09-04
DOI
https://doi.org/10.1002/sia.70118
Primary Topic
Lignin and Wood Chemistry
Type
article
Field-Weighted Citation Impact
0.00

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article

Lignin/Fe 3+ Coordination Networks via PDA/PEI Co‐Deposition: A Green Strategy for Multifunctional Coatings

Jiawei Luo, Xiaodan Liu, Shengnan Yang, Pan Cao et al.
Surface and Interface Analysis
Lignin and Wood Chemistry
article

Lignin/Fe 3+ Coordination Networks via PDA/PEI Co‐Deposition: A Green Strategy for Multifunctional Coatings

Jiawei Luo, Xiaodan Liu, Shengnan Yang, Pan Cao, Yue Wang
article en

Abstract

ABSTRACT Mechanical components made of aluminum suffer from severe friction, wear, biofouling, and corrosion, yet existing coatings often fail to maintain stable tribological performance under cyclic loading. In this study, a nature‐inspired multifunctional coating was fabricated on aluminum via co‐deposition of lignin, Fe 3+ , dopamine, and polyethyleneimine (PEI). The Fe 3+ ions coordinate with phenolic hydroxyl groups in lignin while simultaneously participating in Michael addition and Schiff‐base reactions with DA and PEI, forming a dense crosslinked network. With an optimal lignin content of 5 wt% (L 5 /DA/PEI), the coating exhibits a significantly reduced coefficient of friction (0.43–0.46) and superior wear resistance, attributed to the lubricating boundary film formed by oxygen‐containing groups in lignin. The same coating also demonstrates outstanding adhesion (96.97% residual area) and excellent corrosion resistance in 3.5% NaCl solution. Meanwhile, the coating with 10 wt% lignin (L 10 /DA/PEI) displays remarkable antimicrobial activity against both Staphylococcus aureus and Escherichia coli , benefiting from enhanced Fenton‐like reactions that generate toxic hydroxyl radicals. The findings open new avenues for designing eco‐friendly, multifunctional protective surfaces for durable aluminum components under complex service environments.

Surface and Interface Analysis
Wuhan Research Institute of Materials Protection (CN), Yangzhou University (CN)
National Natural Science Foundation of China
Openalex Percentile: Top 20%
Lignin and Wood Chemistry
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Lignin/Fe 3+ Coordination Networks via PDA/PEI Co‐Deposition: A Green Strategy for Multifunctional Coatings — Jiawei Luo, Xiaodan Liu, et al. · Surface and Interface Analysis (2026) | TGRS Research Map | TGRS