Fly ash-based zeolite/reduced graphene oxide/polymer anti-corrosion coatings for efficient heat dissipation

IF 6.5 2区 材料科学 Q1 CHEMISTRY, APPLIED Progress in Organic Coatings Pub Date : 2024-08-14 DOI:10.1016/j.porgcoat.2024.108739
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Abstract

Industries are demanding more and more for the high corrosion protection and thermal conductivity of organic coatings. However, organic coatings always have low thermal conductivity, and the effective distribution of inorganic particles within these organic coatings remains imperative for further enhancing both anti-corrosion and thermal conductivity capabilities simultaneously. Herein, a novel method is introduced for the exfoliation of reduced graphene oxide (rGO) through wet ball milling, incorporating fly ash-based zeolites. The resulting particles (A-rGO) formed two structures: rGO sheets wrapped around or partially loaded on the surface of zeolite particles. Notably, the absolute zeta potential of A-rGO measures 47.8, marking a 4.26-fold increase compared to rGO, thereby facilitating enhanced dispersion within the coating matrix. Then, benzoxazine/A-rGO based coatings are made, which formed a thermally conductive pathway and constructed an anti-corrosion barrier. The results showed that the highest thermal conductivity of the prepared coating (A-r-2) was as high as 1.561 W·m−1 K−1, which was 676.1 % higher than that of benzoxazine based coating, and 159.7 % higher than that of the same content of benzoxazine/rGO coating. Furthermore, the low-frequency impedance value of the A-r-2 coating reached 2.433 × 109 Ω·cm2 with a water contact angle as high as 129.8 ± 0.2°. The particles designed in this study provides a new system additive for fabricating highly thermally conductive composite coatings with high corrosion resistance.

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用于高效散热的粉煤灰基沸石/还原氧化石墨烯/聚合物防腐蚀涂层
工业对有机涂层的高防腐性和导热性的要求越来越高。然而,有机涂层的导热性能始终较低,为了进一步同时提高防腐和导热能力,在这些有机涂层中有效地分布无机颗粒仍然是当务之急。本文介绍了一种通过湿球研磨剥离还原氧化石墨烯(rGO)的新方法,其中加入了粉煤灰基沸石。所得到的颗粒(A-rGO)形成了两种结构:rGO 片包裹在沸石颗粒表面或部分负载在沸石颗粒表面。值得注意的是,A-rGO 的绝对 zeta 电位为 47.8,比 rGO 提高了 4.26 倍,从而促进了在涂层基质中的分散。然后,制成了基于苯并恶嗪/A-rGO 的涂层,形成了导热通道并构建了防腐蚀屏障。结果表明,所制备涂层(A-r-2)的最高导热系数高达 1.561 W-m-1 K-1,比苯并恶嗪基涂层高出 676.1%,比相同含量的苯并恶嗪/rGO 涂层高出 159.7%。此外,A-r-2 涂层的低频阻抗值达到 2.433 × 109 Ω-cm2,水接触角高达 129.8 ± 0.2°。本研究设计的颗粒为制造具有高耐腐蚀性的高导热复合涂层提供了一种新的系统添加剂。
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来源期刊
Progress in Organic Coatings
Progress in Organic Coatings 工程技术-材料科学:膜
CiteScore
11.40
自引率
15.20%
发文量
577
审稿时长
48 days
期刊介绍: The aim of this international journal is to analyse and publicise the progress and current state of knowledge in the field of organic coatings and related materials. The Editors and the Editorial Board members will solicit both review and research papers from academic and industrial scientists who are actively engaged in research and development or, in the case of review papers, have extensive experience in the subject to be reviewed. Unsolicited manuscripts will be accepted if they meet the journal''s requirements. The journal publishes papers dealing with such subjects as: • Chemical, physical and technological properties of organic coatings and related materials • Problems and methods of preparation, manufacture and application of these materials • Performance, testing and analysis.
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