Koparipek-Arslan Nazlınur, Kaynak-Uraz Elif, Senses Erkan
Department of Chemical and Biological Engineering, Koc University, Sariyer, Istanbul 34450, Turkey.
Chemical Engineering Department, Eskişehir Technical University, Eskişehir 26555, Turkey.
Carbohydr Polym. 2024 Jun 15;334:122013. doi: 10.1016/j.carbpol.2024.122013. Epub 2024 Mar 8.
Flame retardant composite hydrogels offer many advantages over conventional flame retardants, such as high water-retention capacity, enhanced fire resistance, and mechanical tunability. Herein, we developed flame-retardant dynamic covalent hydrogels using wood-derived cellulose nanocrystals (CNCs) crosslinked with boronate ester bonds, addressing environmental and health issues associated with the presence of non-biodegradable synthetic polymer and/or inorganic nanoparticle components in the existing systems. Our rheological investigation shows a liquid-to-soft-solid transition of CNC dispersions with tunable network elasticity ranging between ≈ 0.2 kPa to 3.5 kPa and an immediate self-healing ability. Coating pine wood with these hydrogels delayed ignition by about 30 s compared to native wood, and achieved a remarkable limiting oxygen index of 64.5 %. Also, the increased borax content of the gels was found to decrease and delay the first peak of the heat release rate up to 40 s, causing an increase in the fire retardancy index by 277 %. We correlate the microstructure and rheological behavior with the fire prevention mechanisms for the rational design of sustainable fire-retardant materials, and the results showcased a circular use of plant-based dynamic gels to prevent wood fires, even after drying- a feature lacking in conventional hydrogels.
与传统阻燃剂相比,阻燃复合水凝胶具有许多优点,如高保水能力、增强的耐火性和机械可调性。在此,我们使用与硼酸酯键交联的木质纤维素纳米晶体(CNC)开发了阻燃动态共价水凝胶,解决了现有体系中存在不可生物降解的合成聚合物和/或无机纳米颗粒成分所带来的环境和健康问题。我们的流变学研究表明,CNC分散体从液体转变为软固体,网络弹性可调,范围在≈0.2 kPa至3.5 kPa之间,并且具有即时自愈能力。与天然木材相比,用这些水凝胶涂覆松木可将着火延迟约30秒,并实现了64.5%的显著极限氧指数。此外,发现凝胶中硼砂含量的增加会降低并延迟热释放速率的第一个峰值达40秒,使阻燃指数提高277%。我们将微观结构和流变行为与防火机制相关联,以合理设计可持续的阻燃材料,结果表明,即使在干燥后,植物基动态凝胶仍可循环用于预防木材火灾,这是传统水凝胶所缺乏的特性。