Zhou Hongwei, Zheng Yiming, Li Mengyu, Ba Miao, Wang Yufeng
Department of Material Science and Engineering, Changshu Institute of Technology, Changshu 215500, China.
Polymers (Basel). 2021 Sep 17;13(18):3156. doi: 10.3390/polym13183156.
Copolymers containing MQ silicone and acrylate were synthesized by controlling the additive amount of compositions. Subsequently, fouling release coatings based on the copolymer with the incorporation of non-reactive phenylmethylsilicone oil were prepared. The surface properties of the coating (CAMQ) were consistent with that of the polydimethylsiloxane (PDMS) elastomer, which ensured good hydrophobicity. Moreover, the seawater volume swelling rate of all prepared coatings was less than 5%, especially for CAMQ with only 1.37%. Copolymers enhanced the mechanical properties of the coatings, while the enhancement was proportional to the molar content of structural units from acrylate in the copolymer. More importantly, the adhesion performance between the prepared coatings and substrates indicated that pull-off strength values were more than 1.6 MPa, meaning a high adhesion strength. The phenylmethylsilicone oil leaching observation determined that the oil leaching efficiency increased with the increase in the structural unit's molar content from MQ silicone in the copolymer, which was mainly owing to the decrease in compatibility between oil and the cured coating, as well as the decrease in mechanical properties. High oil leaching efficiency could make up for the decrease in the biofouling removal rate due to the enhancement of the elastic modulus. For CAMQ, it had an excellent antifouling performance at 30 days of exposure time with more than 92% of biofouling removal rate, which was confirmed by biofilm adhesion assay.
通过控制组合物的添加量合成了含有MQ硅氧烷和丙烯酸酯的共聚物。随后,制备了基于该共聚物并掺入非反应性苯基甲基硅油的防污涂料。涂层(CAMQ)的表面性能与聚二甲基硅氧烷(PDMS)弹性体的表面性能一致,这确保了良好的疏水性。此外,所有制备涂层的海水体积溶胀率均小于5%,尤其是CAMQ,仅为1.37%。共聚物提高了涂层的机械性能,而这种提高与共聚物中丙烯酸酯结构单元的摩尔含量成正比。更重要的是,制备的涂层与基材之间的粘附性能表明,拉拔强度值超过1.6MPa,意味着具有高粘附强度。苯基甲基硅油浸出观察结果表明,浸出效率随着共聚物中MQ硅氧烷结构单元摩尔含量的增加而提高,这主要是由于油与固化涂层之间的相容性降低以及机械性能下降所致。高浸出效率可以弥补由于弹性模量提高而导致的生物污垢去除率的下降。对于CAMQ,在暴露30天时具有优异的防污性能,生物污垢去除率超过92%,这通过生物膜粘附试验得到了证实。