Li Qiaoguang, He Yuxin, Yan Jie, Li Yongquan, Feng Junfeng, Wang Zhihong
School of Chemistry and Chemical Engineering, Zhongkai University of Agriculture and Engineering, Guangzhou, 510000, China.
College of Horticulture and Landscape Architecture, Zhongkai University of Agriculture and Engineering, Guangzhou, 510000, China.
Biomater Sci. 2023 Nov 7;11(22):7311-7326. doi: 10.1039/d3bm01308a.
Rosin is a characteristic natural renewable resource. In view of the unique hydrogenated phenanthrene ring skeleton structure of rosin, it can be designed and synthesized to modify silicone rubber for improving its mechanical properties, thermal stability, and other properties. In this paper, the research progress of silicone rubber modified by rosin and its derivatives is reviewed, including internal or surface modification of room temperature or high temperature vulcanized silicone rubber. The different chemical modifications and polymerization pathways to obtain bio-based silicone rubber ( rosin-based silicone cross-linking agent, filler compound rosin-based silicone cross-linking agent, rosin-based polymer, and rosin quaternary ammonium salt bifunctional antibacterial coating) are discussed and its research prospect is reviewed. Overall, the present review article will provide a quantitative experimental basis for rosin to produce bio-renewable multifunctional silicone rubber to increase our level of understanding of the behavior of this important class of silicone rubber and other similar bio-based polymers.
松香是一种具有特色的天然可再生资源。鉴于松香独特的氢化菲环骨架结构,可以对其进行设计和合成,以改性硅橡胶,从而改善其机械性能、热稳定性及其他性能。本文综述了松香及其衍生物改性硅橡胶的研究进展,包括室温或高温硫化硅橡胶的内部或表面改性。讨论了获得生物基硅橡胶(松香基硅交联剂、填料复合松香基硅交联剂、松香基聚合物和松香季铵盐双功能抗菌涂层)的不同化学改性方法和聚合途径,并对其研究前景进行了综述。总体而言,本综述文章将为松香制备生物可再生多功能硅橡胶提供定量实验依据,以提高我们对这类重要硅橡胶及其他类似生物基聚合物性能的认识水平。