Qiu Jiedong, Lai Xuejun, Li Hongqiang, Zeng Xingrong, Zhang Zhuopeng
College of Materials Science and Engineering, Key Lab of Guangdong Province for High Property and Functional Polymer Materials, South China University of Technology, Guangzhou 510641, China.
Polymers (Basel). 2018 May 11;10(5):520. doi: 10.3390/polym10050520.
Free radicals play a negative role during the thermal degradation of silicone rubber (SR). Quenching free radicals is proposed to be an efficient way to improve the thermal-oxidative stability of SR. In this work, a novel zirconium-containing polyhedral oligometallasilsesquioxane (Zr-POSS) with free-radical quenching capability was synthesized and characterized. The incorporation of Zr-POSS effectively improved the thermal-oxidative stability of SR. The ₅ (temperature at 5% weight loss) of SR/Zr-POSS significantly increased by 31.7 °C when compared to the unmodified SR. Notably, after aging 12 h at 280 °C, SR/Zr-POSS was still retaining about 65%, 60%, 75%, and 100% of the tensile strength, tear strength, elongation at break, and hardness before aging, respectively, while the mechanical properties of the unmodified SR were significantly decreased. The possible mechanism of Zr-POSS for improving the thermal-oxidative stability of SR was intensively studied and it was revealed that the POSS structure could act as a limiting point to suppress the random scission reaction of backbone. Furthermore, Zr could quench the free radicals by its empty orbital and transformation of valence states. Therefore, it effectively suppressed the thermal-oxidative degradation and crosslinking reaction of the side chains.
自由基在硅橡胶(SR)的热降解过程中起负面作用。淬灭自由基被认为是提高SR热氧化稳定性的有效方法。在这项工作中,合成并表征了一种具有自由基淬灭能力的新型含锆多面体低聚倍半硅氧烷(Zr-POSS)。Zr-POSS的加入有效地提高了SR的热氧化稳定性。与未改性的SR相比,SR/Zr-POSS的5%失重温度(T₅)显著提高了31.7℃。值得注意的是,在280℃老化12小时后,SR/Zr-POSS的拉伸强度、撕裂强度、断裂伸长率和硬度分别仍保留老化前的约65%、60%、75%和100%,而未改性SR的力学性能则显著下降。深入研究了Zr-POSS提高SR热氧化稳定性的可能机理,结果表明,POSS结构可作为限制点抑制主链的无规断链反应。此外,Zr可以通过其空轨道和价态转变淬灭自由基。因此,它有效地抑制了侧链的热氧化降解和交联反应。