涂层
聚脲
材料科学
生物污染
化学工程
复合材料
聚合物
化学
基质(水族馆)
胶粘剂
作者
Jingyan Zhang,Xiaonan Han,Rongxin Gao,Yujian Yu,Gandong Liu,Xingjiang Liu,Lujun Zhang
标识
DOI:10.1021/acsapm.5c04610
摘要
Traditional antifouling coatings primarily rely on organic fluorine reagents, which are costly, poorly biodegradable, and potentially toxic. These drawbacks limit their applications in high-safety and environmental-standard scenarios, creating an urgent need for antifouling coatings. To address this, a fluorine-free, environmentally friendly castor oil-based polyurea coating (BPAE-X) was developed. Renewable castor oil as the soft segment enhances substrate adhesion, while poly(aspartic ester) F524 enables controlled curing for a smoother surface and optimized mechanical properties. The core innovation is a main-chain capping strategy that integrates the low-surface-energy silane coupling agent BTMSPA into the polyurea matrix, avoiding BTMSPA migration and preserving the antifouling performance. Performance tests confirm BPAE-X’s superior antifouling capability (contact angle >90°, no residue after wiping), excellent durability (low wear index after 1000 Taber abrasion cycles), grade 0 substrate adhesion, 19.06 MPa tensile strength, and corrosion protection for metal substrates. This work provides an effective solution for antifouling applications in sensitive fields.
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