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环保型羧基氧化石墨烯/有机硅涂料的制备与性能

Preparation and Properties of Environmentally Friendly Carboxyl Graphene Oxide/Silicone Coatings.

作者信息

Chu Zhenhua, Lu Jiahao, Tang Wan, Xu Yuchen, Jiang Quantong, Xu Jingxiang

机构信息

Department of Mechanical Engineering, College of Engineering, Shanghai Ocean University, Shanghai 201306, China.

CAS Key Laboratory of Marine Environmental Corrosion and Bio-Fouling, Institute of Oceanology, Chinese Academy of Sciences, Qingdao 266404, China.

出版信息

Materials (Basel). 2025 May 5;18(9):2122. doi: 10.3390/ma18092122.

Abstract

To address the protective demands of marine engineering equipment in complex corrosive environments, this study proposes an environmentally friendly composite coating based on carboxylated graphene oxide (CGO)-modified water-based epoxy organosilicon resin. By incorporating varying mass fractions (0.05-0.25%) of CGO into the resin matrix via mechanical blending, the microstructure, corrosion resistance, and long-term corrosion kinetics of the coatings were systematically investigated. The results demonstrate that the coating with 0.15 wt.% CGO (designated as KCG15) exhibited optimal comprehensive performance: its corrosion current density ( = 4.37 × 10 A/cm) was two orders of magnitude lower than that of the pure resin coating, while its low-frequency impedance modulus (∣∣ = 4.99 × 10 Ω⋅cm) is significantly enhanced, accompanied by improved surface compactness. The coating achieved a 97% inhibition rate against sulfate-reducing bacteria (SRB) through synergistic physical disruption and electrostatic repulsion mechanisms. Long-term corrosion kinetics analysis via 60-day seawater immersion identified three degradation phases-permeation (0-1 day), blockage (1-4 days), and failure (7-60 days)-with structural evolution from microcrack networks to foam-like blistering ultimately reducing by 97.8%. Furthermore, a 180-day atmospheric exposure test confirms the superior weatherability and adhesion of the KCG15 coating, with only minor discoloration observed due to its hydrophobic surface. This work provides theoretical and technical foundations for developing marine anti-corrosion coatings that synergize environmental sustainability with long-term protective performance.

摘要

为满足海洋工程设备在复杂腐蚀环境下的防护需求,本研究提出了一种基于羧基化氧化石墨烯(CGO)改性水性环氧有机硅树脂的环保型复合涂层。通过机械共混将不同质量分数(0.05 - 0.25%)的CGO引入树脂基体,系统研究了涂层的微观结构、耐腐蚀性和长期腐蚀动力学。结果表明,含0.15 wt.% CGO的涂层(命名为KCG15)表现出最佳综合性能:其腐蚀电流密度(= 4.37 × 10 A/cm)比纯树脂涂层低两个数量级,同时其低频阻抗模量(∣∣ = 4.99 × 10 Ω⋅cm)显著提高,且表面致密性得到改善。该涂层通过协同物理破坏和静电排斥机制对硫酸盐还原菌(SRB)的抑制率达到97%。通过60天海水浸泡进行的长期腐蚀动力学分析确定了三个降解阶段——渗透(0 - 1天)、堵塞(1 - 4天)和失效(7 - 60天),结构从微裂纹网络演变为泡沫状起泡,最终减少了97.8%。此外,180天的大气暴露试验证实了KCG15涂层具有优异的耐候性和附着力,因其疏水表面仅观察到轻微变色。这项工作为开发兼具环境可持续性和长期防护性能的海洋防腐涂层提供了理论和技术基础。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0b31/12072725/81514259b708/materials-18-02122-g001.jpg

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