The State Key Laboratory of Polymer Materials Engineering, Polymer Research Institute, Sichuan University, Chengdu, 610065, China.
Macromol Rapid Commun. 2023 Sep;44(18):e2300191. doi: 10.1002/marc.202300191. Epub 2023 Jul 2.
The fabrication of self-healing elastomers with high thermal stability for use in extreme thermal conditions such as aerospace remains a major challenge. A strategy for preparing self-healing elastomers with stable covalent bonds and dynamic metal-ligand coordination interactions as crosslinking sites in polydimethylsiloxane (PDMS) is proposed. The added Fe (III) not only serves as the dynamic crosslinking point at room temperature which is crucial for self-healing performance, but also plays a role as free radical scavenging agent at high temperatures. The results show that the PDMS elastomers possessed an initial thermal degradation temperature over 380 °C and a room temperature self-healing efficiency as high as 65.7%. Moreover, the char residue at 800 °C of PDMS elastomer reaches 7.19% in nitrogen atmosphere, and up to 14.02% in air atmosphere by doping a small amount (i.e., 0.3 wt%) of Fe (III), which is remarkable for the self-healing elastomers that contain weak and dynamic bonds with relatively poor thermal stability. This study provides an insight into designing self-healing PDMS-based materials that can be targeted for use as high-temperature thermal protection coatings.
制备具有高稳定性共价键和动态金属-配体配位相互作用的自修复弹性体,作为交联点用于聚二甲基硅氧烷(PDMS),这对于在航空航天等极端热条件下使用的自修复弹性体来说仍然是一个主要挑战。提出了一种在聚二甲基硅氧烷(PDMS)中添加 Fe(III)作为动态交联点的策略,这种交联点在室温下对于自修复性能至关重要,并且在高温下还可以作为自由基清除剂。结果表明,PDMS 弹性体的初始热降解温度超过 380°C,室温自修复效率高达 65.7%。此外,通过掺杂少量(即 0.3wt%)Fe(III),PDMS 弹性体在 800°C 时的残碳率在氮气气氛中达到 7.19%,在空气气氛中达到 14.02%,这对于含有较弱和动态键且热稳定性相对较差的自修复弹性体来说是显著的。这项研究为设计基于 PDMS 的自修复材料提供了新的思路,这些材料可以作为高温热防护涂层。