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Article

A Self-Healing, Transparent, and Hydrophobic Flame-Retardant Coating for Wood Based on Bio-Derived Flame Retardants and Fluorosilane Surface Treatment

1
College of Materials Science and Engineering, Chongqing University, 174 Shazhengjie, Shapingba, Chongqing 400044, China
2
State Key Laboratory of Fire Science, University of Science and Technology of China, Hefei 230026, China
3
State Key Laboratory of Safety and Resilience of Civil Engineering in Mountain Area, Chongqing University, Chongqing 400044, China
4
Hefei Institute for Public Safety Research, Tsinghua University, Hefei 230601, China
*
Authors to whom correspondence should be addressed.
Polymers 2026, 18(12), 1497; https://doi.org/10.3390/polym18121497
Submission received: 16 May 2026 / Revised: 12 June 2026 / Accepted: 12 June 2026 / Published: 15 June 2026

Abstract

Wood’s inherent flammability, arising from its cellular organic composition, demands effective protective strategies. This study aimed to develop a multifunctional bio-based wood coating simultaneously integrating flame retardancy, optical transparency, moisture-triggered self-healing, and surface hydrophobicity within a single formulation. An intumescent flame retardant (PAGHR) was synthesized via ionic assembly of a phytic acid–phosphorylated polyethylene glycol conjugate (PgP) with a piperazine–etidronic acid salt (HEPHR), subsequently blended with gelatin (G) and surface-finished with fluorosilane. The optimized coating (G/PAGHR-4) achieved a limiting oxygen index (LOI) of 37.2% and passed the UL-94 V-0 rating. Cone calorimetry demonstrated reductions of 75.1% in peak heat release rate (pHRR) and 50.0% in total heat release (THR) relative to the neat gelatin control. Char yield at 700 °C increased substantially from 17.8 wt% to 41.0 wt%, confirming effective condensed-phase char promotion. Beyond fire performance, the coating maintained high visible-light transmittance, preserved natural wood aesthetics, and achieved macroscopic scratch healing within 40 min upon ambient water contact. Fluorosilane finishing elevated the water contact angle to 122°. These results establish a scalable, environmentally friendly strategy for multifunctional bio-based protective coatings applicable to wood, textiles, and polymer substrates.
Keywords: wood coating; flame retardancy; gelatin; transmittance; bio-based protective coatings wood coating; flame retardancy; gelatin; transmittance; bio-based protective coatings

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MDPI and ACS Style

Liu, L.; He, H.; Feng, X.; Fu, M.; Yang, H.; Yu, B. A Self-Healing, Transparent, and Hydrophobic Flame-Retardant Coating for Wood Based on Bio-Derived Flame Retardants and Fluorosilane Surface Treatment. Polymers 2026, 18, 1497. https://doi.org/10.3390/polym18121497

AMA Style

Liu L, He H, Feng X, Fu M, Yang H, Yu B. A Self-Healing, Transparent, and Hydrophobic Flame-Retardant Coating for Wood Based on Bio-Derived Flame Retardants and Fluorosilane Surface Treatment. Polymers. 2026; 18(12):1497. https://doi.org/10.3390/polym18121497

Chicago/Turabian Style

Liu, Lu, Hongfei He, Xiaming Feng, Ming Fu, Hongyu Yang, and Bin Yu. 2026. "A Self-Healing, Transparent, and Hydrophobic Flame-Retardant Coating for Wood Based on Bio-Derived Flame Retardants and Fluorosilane Surface Treatment" Polymers 18, no. 12: 1497. https://doi.org/10.3390/polym18121497

APA Style

Liu, L., He, H., Feng, X., Fu, M., Yang, H., & Yu, B. (2026). A Self-Healing, Transparent, and Hydrophobic Flame-Retardant Coating for Wood Based on Bio-Derived Flame Retardants and Fluorosilane Surface Treatment. Polymers, 18(12), 1497. https://doi.org/10.3390/polym18121497

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