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One-pot synthesis of NiAl-CO3 LDH anti-corrosion coatings from CO2-saturated precursors

机译:由一氧化碳饱和的前驱物一锅法合成NiAl-CO3 LDH防腐涂层

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摘要

Anti-corrosive coatings based on layered double hydroxides (LDHs) have been considered as promising alternatives to conventional chromate-containing conversion coatings. Among various LDHs, carbonate-intercalated LDH coatings with a c-axis preferred orientation should be the optimum structure for protecting metals against corrosion. Herein we successfully prepared NiAl–CO3 LDH coatings on aluminium plates in one step. Particularly it was found that CO2 dissolved in the precursor solution exerted great influence on the microstructure and anti-corrosion capacity of prepared LDH coatings. Trace amounts of CO2 in the precursor solution led to the formation of ab-oriented 7 μm-thick LDH coatings, while preferentially c-oriented LDH coatings with an average thickness of 12 μm were formed from CO2-saturated precursor solutions. A DC polarization test demonstrated that preferentially c-oriented LDH coatings exhibited much higher anti-corrosion performance than ab-oriented LDH coatings possibly due to the decreased density of mesoscopic defects. Simultaneously, CO2, the green gas, was also positively utilized.
机译:基于层状双氢氧化物(LDHs)的防腐涂料已被认为是常规含铬酸盐转化涂料的有前途的替代品。在各种LDH中,具有c轴首选方向的碳酸盐插层LDH涂层应该是保护金属免受腐蚀的最佳结构。在这里,我们一步一步就成功地在铝板上制备了NiAl–CO3 LDH涂层。特别地,发现溶解在前体溶液中的CO 2对所制备的LDH涂层的微观结构和耐腐蚀性具有很大的影响。前体溶液中的痕量CO2导致形成ab取向的7μm厚的LDH涂层,而优先选择的c取向的LDH涂层是由CO2饱和的前体溶液形成的,平均厚度为12μm。直流极化测试表明,优先于c取向的LDH涂层表现出比ab取向的LDH涂层更高的防腐性能,这可能是由于介观缺陷密度降低所致。同时,积极利用了二氧化碳(绿色气体)。

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