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Polyisocyanate bridged hexagonal boron nitride/polyaspartic nanocomposite coatings with superior tribological and anticorrosion performance  ( SCI-EXPANDED收录 EI收录)  

文献类型:期刊文献

英文题名:Polyisocyanate bridged hexagonal boron nitride/polyaspartic nanocomposite coatings with superior tribological and anticorrosion performance

作者:Cheng, Xin[1];Liu, Qiang[1,2];Ye, Yong[3];Xie, Shaochun[2];Xu, Haitao[1]

机构:[1]East China Univ Sci & Technol, Sch Chem Engn, Shanghai 200237, Peoples R China;[2]Shanghai Hilong Shine New Mat Res Inst, Shanghai 200949, Peoples R China;[3]Shanghai Zhenhua Heavy Ind Co Ltd, Shanghai 200125, Peoples R China

年份:2025

卷号:200

外文期刊名:PROGRESS IN ORGANIC COATINGS

收录:;EI(收录号:20250217668546);WOS:【SCI-EXPANDED(收录号:WOS:001399435800001)】;

语种:英文

外文关键词:Polyaspartic coating; Hexagonal boron nitride; Anti-corrosion; Wear resistance; Composite materials

摘要:The wear resistance of coatings is crucial in a wide range of fields, including automotive, wind power equipment, aerospace, manufacturing, and construction. The development and application of advanced wear and corrosive resistant coatings continue to be a focal point for research and innovation across these industries. Hexagonal boron nitride (h-BN), known for its excellent barrier and self-lubricating characteristics, has demonstrated significant potential in enhancing the anti-corrosion and wear resistance of organic coatings. However, the strong interlayer interactions and inert surface of h-BN result in aggregation within coatings, which weakens interfacial interactions with polymer matrices and thereby limits its application in organic coatings. In this research, we devised a dual-modification strategy, integrating non-covalent and covalent techniques. Polydopamine served as a linking agent, allowing 4,4 '-methylenediphenyl diisocyanate (MDI) molecules to be covalently attached to h-BN nanosheets, enhancing both dispersion and interfacial compatibility within highsolid polyaspartic (PAE) coatings. When compared to pure PAE, the MDIBN/PAE composite demonstrated a 10.8 % improvement in tensile strength and a 29.7 % increase in elongation at break. Friction tests further showed a 25.9 % reduction in the friction coefficient and a 40.1 % decrease in wear rate for the MDIBN/PAE composite coating, relative to the pure PAE. After 28 days of immersion in a 3.5 wt% NaCl solution, electrochemical impedance spectroscopy (EIS) indicated a maximum |Z|0.01Hz of 7.48 x 109 Omega & sdot;cm2, surpassing the pure PAE by 1.5 orders of magnitude. The enhanced performance of the MDIBN/polyaspartic nanocomposite is attributed to the in-situ reaction, ensuring even distribution and excellent compatibility of MDIBN nanosheets within the polyaspartic matrix. This study highlights the potential of this coating for robust anti-corrosion and wear-resistant applications, particularly in metal protection.

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