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One-pot synthesis of NiAl–CO3LDH anti-corrosion coatings from CO2-saturated precursors
Author(s) -
Yi Liu,
Tongwen Yu,
Rui Cai,
Yanshuo Li,
Weishen Yang,
Jürgen Caro
Publication year - 2015
Publication title -
rsc advances
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.746
H-Index - 148
ISSN - 2046-2069
DOI - 10.1039/c5ra01969a
Subject(s) - nial , corrosion , materials science , durability , chemical engineering , metallurgy , inorganic chemistry , intermetallic , chemistry , composite material , engineering , alloy
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.Alexander von Humboldt FoundationNatural Science Foundation of China/21176231Natural Science Foundation of China/21361130018Natural Science Foundation of China/ 21476223CAS 100-talent programGZ 911/Sino-German Cooperation Group on Inorganic Membrane

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