Murtaza Hassan, Zhao Jingmao, Tabish Mohammad, Wang Jingbao, Mubeen Muhammad, Zhang Jingfan, Zhang Sheng, Fan Baomin
College of Materials Science and Engineering, Beijing University of Chemical Technology, Beijing 100029, China.
Beijing Key Laboratory of Electrochemical Process and Technology for Materials, Beijing 100029, China.
ACS Appl Mater Interfaces. 2024 Mar 13;16(10):13114-13131. doi: 10.1021/acsami.3c19245. Epub 2024 Mar 1.
Extensive utilization in various settings poses extra requirements of coatings beyond just anticorrosion properties. Herein, 8-hydroxyquinoline (8-HQ) intercalated CaAl-based layered double hydroxide (CaAl-8HQ-LDH) was loaded on reduced GO (rGO) through a one-pot hydrothermal reaction, which was employed as the nanofiller endowing the epoxy (EP/CaAl-8HQ LDH@rGO) with excellent flame-retardancy while ensuring efficient protection for mild steel. Results of electrochemical impedance spectroscopy (EIS) demonstrated the durability of the EP/CaAl-8HQ LDH@rGO-coated specimen, with the impedance at the lowest frequency (||) maintained as 1.84 × 10 Ω cm after 120 days of immersion in a 3.5 wt % NaCl solution. Even for the scratched EP/CaAl-8HQ LDH@rGO system, only a slight decline in || was observed during 180 h of exposure to the NaCl solution, indicating a self-healing feature supported by salt spray tests. UL-94 burning tests revealed the V-0 rating for EP/CaAl-8HQ LDH@rGO with improved thermostability. Strong physical barrier from two-dimensional rGO and the release of 8-HQ from LDH interlayers accounted for the anticorrosive and self-healing properties. However, O-concentration dilution and charring-layer promotion governed the flame-retardant behavior of the nanocomposite coating. The intercomponent synergy of nanofillers achieved in this work may provide a useful reference for designing multifunctional coatings.
在各种环境中的广泛应用对涂层提出了除防腐性能之外的额外要求。在此,通过一锅水热反应将8-羟基喹啉(8-HQ)插层的CaAl基层状双氢氧化物(CaAl-8HQ-LDH)负载在还原氧化石墨烯(rGO)上,将其用作纳米填料,赋予环氧树脂(EP/CaAl-8HQ LDH@rGO)优异的阻燃性,同时确保对低碳钢的有效保护。电化学阻抗谱(EIS)结果表明,EP/CaAl-8HQ LDH@rGO涂层试样具有耐久性,在3.5 wt% NaCl溶液中浸泡120天后,最低频率下的阻抗(||)保持为1.84×10 Ω cm。即使对于有划痕的EP/CaAl-8HQ LDH@rGO体系,在暴露于NaCl溶液180小时期间,||仅略有下降,盐雾试验表明其具有自修复特性。UL-94燃烧试验表明EP/CaAl-8HQ LDH@rGO具有V-0等级且热稳定性有所提高。二维rGO形成的强大物理屏障以及LDH层间8-HQ的释放解释了其防腐和自修复性能。然而,O浓度稀释和炭化层促进决定了纳米复合涂层的阻燃行为。这项工作中实现的纳米填料之间的组分间协同作用可为设计多功能涂层提供有用的参考。