Zhan Wang, Tang Lingling, Xu Zhiyuan, Chen Le, Li Lixia, Zhou Ru, Chen Mingyi, Kong Qinghong, Jiang Juncheng
School of the Environment and Safety Engineering, Jiangsu University, Zhenjiang 212013, China.
Department of Electronic Engineering, School of Electronic Science and Engineering, Nanjing University, Nanjing 210023, China.
ACS Appl Mater Interfaces. 2025 Jul 16;17(28):41187-41197. doi: 10.1021/acsami.5c10776. Epub 2025 Jul 7.
Gelatin (GA) was used as a reinforced material in the study to enhance the thermal-mechanical properties of the polyimide (PI) aerogel. The effects of the content and the freezing rate on the thermal-mechanical properties of the composite aerogels were investigated. The internal structure and chemical composition of the composite aerogels were analyzed by using characterization methods. Finally, the mechanism of enhancement of thermal-mechanical of the composite aerogels is further discussed. The results show that GA can effectively enhance the thermal-mechanical properties of PI aerogel, and the appropriate freezing rate can form a dense pore structure inside the composite aerogel to reduce the thermal conductivity and improve the mechanical property. Moreover, the thermal runaway protection result demonstrated that the composite aerogel significantly delayed the time of thermal runaway of the lithium battery.
在该研究中,明胶(GA)被用作增强材料以提高聚酰亚胺(PI)气凝胶的热机械性能。研究了含量和冷冻速率对复合气凝胶热机械性能的影响。通过表征方法分析了复合气凝胶的内部结构和化学成分。最后,进一步探讨了复合气凝胶热机械增强的机理。结果表明,GA能有效提高PI气凝胶的热机械性能,适当的冷冻速率可在复合气凝胶内部形成致密的孔结构,从而降低热导率并提高机械性能。此外,热失控保护结果表明,复合气凝胶显著延迟了锂电池热失控的时间。