Yu Zhen, Liu Yanlin, Zhou Xiangyu, Fang Yajin, Tang Zhaobin, Zhu Jin, Zhang Junping
Research Center of Resource Chemistry and Energy Materials, and State Key Laboratory of Solid Lubrication, Lanzhou Institute of Chemical Physics, Chinese Academy of Sciences, Lanzhou, 730000, P. R. China.
Center of Materials Science and Optoelectronics Engineering, University of Chinese Academy of Sciences, Beijing, 100049, P. R. China.
Adv Sci (Weinh). 2024 Dec;11(48):e2410773. doi: 10.1002/advs.202410773. Epub 2024 Nov 18.
Plastic recycling is a critical step toward improving waste management and achieving economic recycling. Here, a thermoset crosslinked by guanythiourea structure (GTUH network) is reported, that addresses the recycling issue of thermosets by serial hybridization of thiourea and guanidine urea. The dual dissociative dynamic exchange reaction of guanamine urea and thiourea, combined with non-covalent hydrogen bonding interactions, endows the network with rapid relaxation ability. GTUH networks, in particular, can be recycled through continuous extrusion processing due to multiple reversible mechanisms, as opposed to hot pressing alone. Even if reprocessed by hot pressing, only 5 min at 140 °C and 10 MPa are required. The oxidation enhancement mechanism of thiourea contributes to maintaining or even improving the mechanical properties of the recycled network. Moreover, the dynamic reactions of guanythiourea structure allow for closed-loop chemical recycling of the network. Research into recyclable carbon fiber-reinforced composites indicates promising potential applications for this material in the circular economy and resources.
塑料回收是改善废物管理和实现经济回收的关键一步。在此,报道了一种由胍硫脲结构交联的热固性材料(GTUH网络),它通过硫脲和胍脲的串联杂交解决了热固性材料的回收问题。胍胺脲和硫脲的双重解离动态交换反应,结合非共价氢键相互作用,赋予该网络快速松弛能力。特别是,GTUH网络由于多种可逆机制,可以通过连续挤出加工进行回收,而不是仅通过热压。即使通过热压进行再加工,在140°C和10MPa下也仅需5分钟。硫脲的氧化增强机制有助于维持甚至改善回收网络的机械性能。此外,胍硫脲结构的动态反应允许该网络进行闭环化学回收。对可回收碳纤维增强复合材料的研究表明,这种材料在循环经济和资源方面具有广阔的潜在应用前景。