Dong Miao, Liu Zheng, Gao Yuxing, Wang Xuemei, Chen Junhua, Yang Jianxin
Key Laboratory of Green Catalysis and Reaction Engineering of Haikou, College of Science, Hainan University Haikou 570228 P. R. China
Hainan Provincial Fine Chemical Engineering Research Center, Hainan University Haikou 570228 P. R. China.
RSC Adv. 2021 May 24;11(31):18787-18796. doi: 10.1039/d1ra01826d.
In order to find a new type of antifouling coating with higher biological activity and more environmental protection, heterocyclic compounds and benzisothiazolinone were introduced into acrylic resin to prepare a new type of antifouling resin. In this study, a series of grafted acrylic resins simultaneously containing benzoisothiazolinone and heterocyclic monomers were prepared by the copolymerization of an allyl monomer with methyl methacrylate (MMA) and butyl acrylate (BA). Inhibitory activities of the copolymers against marine fouling organisms were also investigated. Results revealed that the copolymers exhibit a clear synergistic inhibitory effect on the growth of three seaweeds: , and , respectively, and three bacteria, , and , respectively. In addition, the copolymers exhibited excellent inhibition against barnacle larvae. Marine field tests indicated that the resins exhibit outstanding antifouling potency against marine fouling organisms. Moreover, the introduction of the heterocyclic group led to the significantly enhanced antifouling activities of the resins; the addition of the heterocyclic unit in copolymers led to better inhibition than that observed in the case of the resin copolymerized with only the benzoisothiazolinone active monomer.
为了找到一种具有更高生物活性且更环保的新型防污涂料,将杂环化合物和苯并异噻唑啉酮引入丙烯酸树脂中,制备了一种新型防污树脂。在本研究中,通过烯丙基单体与甲基丙烯酸甲酯(MMA)和丙烯酸丁酯(BA)的共聚反应,制备了一系列同时含有苯并异噻唑啉酮和杂环单体的接枝丙烯酸树脂。还研究了这些共聚物对海洋污损生物的抑制活性。结果表明,这些共聚物分别对三种海藻( 、 和 )以及三种细菌( 、 和 )的生长表现出明显的协同抑制作用。此外,这些共聚物对藤壶幼虫表现出优异的抑制作用。海洋现场测试表明,该树脂对海洋污损生物具有出色的防污效力。此外,杂环基团的引入显著提高了树脂的防污活性;与仅与苯并异噻唑啉酮活性单体共聚的树脂相比,共聚物中杂环单元的加入导致了更好的抑制效果。