Olejnik Olga, Masek Anna, Szynkowska-Jóźwik Małgorzata Iwona
Institute of Polymer and Dye Technology, Faculty of Chemistry, Lodz University of Technology, Stefanowskiego 12/16, 90-924 Lodz, Poland.
Institute of General and Ecological Chemistry, Faculty of Chemistry, Lodz University of Technology, Żeromskiego 116, 90-924 Lodz, Poland.
Materials (Basel). 2021 Jul 19;14(14):4028. doi: 10.3390/ma14144028.
In this publication, novel bio-based composites made of epoxidized natural rubber with 50 mol% of epoxidation (ENR-50) are presented. The obtained materials, partially cured with a totally environmentally friendly crosslinking system consisting of natural ingredients, including quercetin and silica, exhibit a self-healing ability resulting from the self-adhesion of ENR-50 and reversible physical forces between the curing agent and the matrix. The impact of natural components on the crosslinking effect in uncured ENR-50 matrix was analyzed based on rheometric measurements, mechanical tests and crosslinking density. The partially crosslinked samples were next cut into two separate pieces, which were instantly contacted together under a small manual press, left at room temperature for a few days for the healing process to occur and finally retested. The healing efficiency was estimated by measuring mechanical properties before and after the healing process and was also confirmed by photos taken using optical and scanning electron microscope (SEM). According to the results, a combination of silica and quercetin is a totally safe, natural and effective crosslinking system dedicated to epoxidized natural rubber. The novel composites containing ingredients safe for human beings exhibit promising self-healing properties with a healing efficiency of up to 45% without any external stimuli and stand a chance of becoming innovative biomedical materials.
在本出版物中,展示了由环氧化程度为50摩尔%的环氧化天然橡胶(ENR - 50)制成的新型生物基复合材料。所获得的材料,使用由包括槲皮素和二氧化硅在内的天然成分组成的完全环保的交联体系进行部分固化,由于ENR - 50的自粘性以及固化剂与基体之间的可逆物理力而表现出自愈能力。基于流变测量、力学测试和交联密度分析了天然成分对未固化ENR - 50基体中交联效果的影响。接下来将部分交联的样品切成两块,在小型手动压力机下立即将它们接触在一起,在室温下放置几天以使愈合过程发生,最后重新进行测试。通过测量愈合过程前后的力学性能来评估愈合效率,并且还通过使用光学显微镜和扫描电子显微镜(SEM)拍摄的照片进行了确认。根据结果,二氧化硅和槲皮素的组合是一种完全安全、天然且有效的用于环氧化天然橡胶的交联体系。含有对人类安全成分的新型复合材料表现出有前景的自愈性能,在没有任何外部刺激的情况下愈合效率高达45%,并有机会成为创新的生物医学材料。