Seidi Farzad, Jouyandeh Maryam, Taghizadeh Mohsen, Taghizadeh Ali, Vahabi Henri, Habibzadeh Sajjad, Formela Krzysztof, Saeb Mohammad Reza
Provincial Key Lab of Pulp and Paper Science and Technology and Joint International Research Lab of Lignocellulosic Functional Materials, Nanjing Forestry University, Nanjing 210037, China.
Center of Excellence in Electrochemistry, School of Chemistry, College of Science, University of Tehran, Tehran 11155-4563, Iran.
Materials (Basel). 2020 Jun 26;13(12):2881. doi: 10.3390/ma13122881.
Epoxy coatings are developing fast in order to meet the requirements of advanced materials and systems. Progress in nanomaterial science and technology has opened a new era of engineering for tailoring the bulk and surface properties of organic coatings, e.g., adhesion to the substrate, anti-corrosion, mechanical, flame-retardant, and self-healing characteristics. Metal-organic frameworks (MOFs), a subclass of coordinative polymers with porous microstructures, have been widely synthesized in recent years and applied in gas and energy storage, separation, sensing, environmental science and technology, and medicine. Nevertheless, less attention has been paid to their performance in coatings. Well-known as micro- and nanoporous materials, with a tailorable structure consisting of metal ions and organic linkers, MOFs have a huge loading capacity, which is essential for the delivery of corrosion inhibitors. This review paper attempts to highlight the importance of epoxy/MOF composites for coating applications. A particular emphasis was explicitly placed on the anti-corrosion, flame-retardant, mechanical, and dielectric properties of epoxy/MOF coatings.
为了满足先进材料和系统的要求,环氧涂料正在快速发展。纳米材料科学与技术的进步开启了一个工程新时代,可用于定制有机涂料的整体和表面性能,例如与基材的附着力、防腐性能、机械性能、阻燃性能和自愈特性。金属有机框架(MOF)是具有多孔微结构的配位聚合物的一个子类,近年来已被广泛合成,并应用于气体和能量存储、分离、传感、环境科学与技术以及医学领域。然而,人们对其在涂料中的性能关注较少。MOF作为微孔和纳米多孔材料而闻名,其结构由金属离子和有机连接体组成,具有可定制性,具有巨大的负载能力,这对于缓蚀剂的输送至关重要。本文试图强调环氧/MOF复合材料在涂料应用中的重要性。特别明确强调了环氧/MOF涂料的防腐、阻燃、机械和介电性能。