Transparent wood composites with phosphorylated cellulose for enhanced fire safety: A bioinspired solution for sustainable building materials

烧焦 纤维素 材料科学 复合材料 微晶纤维素 炭化 生物复合材料 燃烧 聚氨酯 图层(电子) 阻燃剂 丙烯酸酯 极限抗拉强度 纳米纤维素 产量(工程) 木粉 多孔性 化学工程
作者
Mingjie Guo,Ying Pan,Wei Wang,Lulu Xu,Yan Zhang,Haifeng Pan,Shaodan Xu,Dihua Wu,Dong Zhang,Suling Zhang,Ting Lü,Hongting Zhao
出处
期刊:Construction and Building Materials [Elsevier BV]
卷期号:495: 143711-143711 被引量:3
标识
DOI:10.1016/j.conbuildmat.2025.143711
摘要

This study proposes a bioinspired char-forming architecture to develop fire-safe transparent wood. This is achieved by synergistically incorporating phosphorylated cellulose (PC) into wood aerogels. The incorporation of PC enhances the flame retardancy of polyurethane acrylate (PUA) composites. The PC was synthesized through phosphorous acid modification of microcrystalline cellulose and then uniformly distributed within delignified wood aerogels. These aerogels were subsequently impregnated with UV-curable PUA resin to produce transparent wood structures. The PC-modified wood exhibited excellent flame-retardant properties, including self-extinguishing behavior and the formation of continuous, thermally stable char layers during combustion. Structural and chemical characterizations using FTIR, XPS, SEM, and elemental mapping confirmed successful integration of PC into the wood matrix. Thermal analysis (TGA) and micro-scale combustion calorimetry showed a significant reduction in peak heat release rate (pHRR) (by 42 %) and an increase in char yield (up to 36 wt%). Phosphorylated cellulose-functionalized wood aerogels endowed PUA composites with 26 % lower pHRR and 25 % reduced total heat release (THR) via char-formation-dominated flame-retardant mechanisms. Importantly, the modified transparent wood retained high optical transmittance (∼50 %) and mechanical strength (∼30 MPa tensile strength), making it suitable for multifunctional applications. To better understand the flame-retardant mechanism, molecular dynamics simulations were conducted, demonstrating the barrier role of the char layer in suppressing the release of flammable gases. • Eco-friendly transparent wood with enhanced fire safety via PC-modified aerogels. • PC-wood shows self-extinguishing & 42 % lower heat release via char formation. • PC-modified wood aerogels cut PUA's pHRR by 26 % and THR by 25 % via char formation. • Char layer blocks flammable gases, proven by molecular dynamics simulations.
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