Liu Shuang, Quan Xin-Yao, Wang Hao-Ran, Liao Shuangquan, Luo Ming-Chao
Key Laboratory of Advanced Materials of Tropical Island Resources of Ministry of Education, Natural Rubber Cooperative Innovation Center of Hainan Province & Ministry of Education of PRC, School of Materials Science and Engineering, Hainan University, Haikou 570228, China.
Key Laboratory of Carbon Fiber and Functional Polymers, Beijing University of Chemical Technology, Ministry of Education, Beijing 100000, China.
Polymers (Basel). 2022 Mar 18;14(6):1234. doi: 10.3390/polym14061234.
Zinc oxide (ZnO), which is toxic to aquatic organisms, is widely used as an activator in the rubber industry. The reduction of ZnO content is one of the efficient ways to tackle ecological environment impacts induced by ZnO. However, the incompatibility between Zn and organic matrix inhibits the solubility and activity of Zn in the organic matrix, causing the heavy use of ZnO. This work develops a phase transfer agent with Zn-philic structure and oleophilic structure to increase the solubility of Zn in the organic matrix. The phase transfer agent and Zn form coordination interactions, while the hydrophobic chains of phase transfer agent and organic matrix form hydrophobic interactions. The above two interactions improve the solubility and activity of Zn in the organic matrix, contributing to the formation of crosslinking network. Through the phase transfer agent strategy, we obtain the mechanically robust elastomers, and the samples with low ZnO content still maintain the superior properties. This work provides an efficient way to reduce ZnO content without sacrificing the performance of elastomers.
氧化锌(ZnO)对水生生物有毒,在橡胶工业中被广泛用作活化剂。降低ZnO含量是应对ZnO对生态环境影响的有效方法之一。然而,锌与有机基体之间的不相容性抑制了锌在有机基体中的溶解性和活性,导致ZnO的大量使用。这项工作开发了一种具有亲锌结构和亲油结构的相转移剂,以提高锌在有机基体中的溶解度。相转移剂与锌形成配位相互作用,而相转移剂的疏水链与有机基体形成疏水相互作用。上述两种相互作用提高了锌在有机基体中的溶解度和活性,有助于形成交联网络。通过相转移剂策略,我们获得了机械性能强劲的弹性体,且低ZnO含量的样品仍保持优异性能。这项工作提供了一种在不牺牲弹性体性能的情况下降低ZnO含量的有效方法。