Covalently anchored chromatic waterborne polyurethane with intrinsically dual-dynamic self-healing network for durable and colorfast textile coatings

To address the critical challenges associated with the practical application of traditional dye molecules on fabric surfaces, including dye migration, insufficient colorfastness and the spontaneous microcracks that significantly impair the color integrity and aesthetics, a series of chromatic waterborne polyurethane (WPU) were designed and synthesized with a dual dynamic self-healing system. Sudan black B as color molecular moiety were covalently bonded to WPU backbone and could effectively inhibit migration dye migration and demonstrated excellent colorfastness. More notably, the synergistic network from dynamic covalent bond of bis(2-hydroxyethyl) disulfide (HEDS) and non-covalent crosslinking via 2,6-diaminopyridine (DAP)/iron coordination could enabled chromatic WPU self-healing performance. At room temperature, the scratches on the chromatic WPU film surface could self-healed within 30 min and the damage to the chromatic WPU-coated fabric was nearly restored 100% in an hour. This dual dynamic strategy resolved key issues of dye stability, colorfastness and self-healing and offered a novel approach for sustainable coloring materials in textile and functional coatings.

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Publication Details

Journal
Progress in Organic Coatings
Published
2026-09-28
DOI
https://doi.org/10.1016/j.porgcoat.2026.110649
Primary Topic
Polymer composites and self-healing
Type
article
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Covalently anchored chromatic waterborne polyurethane with intrinsically dual-dynamic self-healing network for durable and colorfast textile coatings

Hongzhan Chen, Wenjing Huo, Haitao Zhang, Zhiliang Zhang
Progress in Organic Coatings
Polymer composites and self-healing
article

Covalently anchored chromatic waterborne polyurethane with intrinsically dual-dynamic self-healing network for durable and colorfast textile coatings

Hongzhan Chen, Wenjing Huo, Haitao Zhang, Zhiliang Zhang
article en

Abstract

To address the critical challenges associated with the practical application of traditional dye molecules on fabric surfaces, including dye migration, insufficient colorfastness and the spontaneous microcracks that significantly impair the color integrity and aesthetics, a series of chromatic waterborne polyurethane (WPU) were designed and synthesized with a dual dynamic self-healing system. Sudan black B as color molecular moiety were covalently bonded to WPU backbone and could effectively inhibit migration dye migration and demonstrated excellent colorfastness. More notably, the synergistic network from dynamic covalent bond of bis(2-hydroxyethyl) disulfide (HEDS) and non-covalent crosslinking via 2,6-diaminopyridine (DAP)/iron coordination could enabled chromatic WPU self-healing performance. At room temperature, the scratches on the chromatic WPU film surface could self-healed within 30 min and the damage to the chromatic WPU-coated fabric was nearly restored 100% in an hour. This dual dynamic strategy resolved key issues of dye stability, colorfastness and self-healing and offered a novel approach for sustainable coloring materials in textile and functional coatings.

Progress in Organic CoatingsVol. 222
Qilu University of Technology (CN), Shandong Academy of Sciences (CN)
Openalex Percentile: Top 24%
Polymer composites and self-healing
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Covalently anchored chromatic waterborne polyurethane with intrinsically dual-dynamic self-healing network for durable and colorfast textile coatings — Hongzhan Chen, Wenjing Huo, et al. · Progress in Organic Coatings (2026) | TGRS Research Map | TGRS