The Collaborative Innovation Center for Eco-Friendly and Fire-Safety Polymeric Materials, National Engineering Laboratory of Eco-Friendly Polymeric Materials (Sichuan), State Key Laboratory of Polymer Materials Engineering, College of Chemistry, Sichuan University, Chengdu 610064, China.
The Collaborative Innovation Center for Eco-Friendly and Fire-Safety Polymeric Materials, National Engineering Laboratory of Eco-Friendly Polymeric Materials (Sichuan), State Key Laboratory of Polymer Materials Engineering, College of Chemistry, Sichuan University, Chengdu 610064, China.
J Hazard Mater. 2020 May 5;389:122040. doi: 10.1016/j.jhazmat.2020.122040. Epub 2020 Jan 20.
Previous approaches to suppressing fire hazards are concentrated on brominated flame retardants (BFRs) or phosphorus flame retardants (PFRs). However, their chemical hazards to health and environment have not been able to be ignored currently. It is quite urgent to propose a durable and environmentally-friendly fire-safe strategy, which can eliminate migration, release, and environmental hazards of traditional flame retardants during their use, disposal, and recycling. Herein, we design a fire-responsive molecule (FRM) only containing C, H, and O elements based on full-life-cycle consideration and achieve fire safety via the synergy of specifically binding aliphatic fragments and aromatized charring in combustion. The resulting polymer shows low fire hazard with excellent self-extinguish, low organic volatiles/heat/smoke release, and good comprehensive performance. This polymer can be fabricated to fibres with potential applications for textiles, and electronics, etc. Therefore, we achieve a durable fire-safe strategy without flame-retardant chemicals hazard. This approach can fundamentally eliminate the potential chemical hazards associated with the introduction of halogen or phosphorus flame retardants and give a new vision about solving the "flame retardant chemical hazard issues" that are debated, tracked, and evaluated for several decades.
先前抑制火灾隐患的方法主要集中在溴系阻燃剂(BFRs)或磷系阻燃剂(PFRs)上。然而,它们对健康和环境的化学危害目前还无法被忽视。目前迫切需要提出一种持久且环保的防火策略,可以消除传统阻燃剂在使用、处置和回收过程中的迁移、释放和环境危害。在此,我们基于全生命周期考虑,设计了一种仅含 C、H 和 O 元素的火灾响应分子(FRM),并通过在燃烧过程中特定结合脂肪族片段和芳构化炭化协同作用实现防火安全。得到的聚合物具有低火灾危险性,具有优异的自熄灭性、低有机挥发物/热量/烟雾释放以及良好的综合性能。这种聚合物可以被加工成纤维,具有应用于纺织品和电子等领域的潜力。因此,我们实现了一种持久的防火安全策略,而没有阻燃化学品的危害。这种方法可以从根本上消除与引入卤素或磷系阻燃剂相关的潜在化学危害,并为解决几十年来备受争议、跟踪和评估的“阻燃剂化学危害问题”提供新的思路。