Matches in SemOpenAlex for { <https://semopenalex.org/work/W4307942374> ?p ?o ?g. }
- W4307942374 endingPage "1634" @default.
- W4307942374 startingPage "1634" @default.
- W4307942374 abstract "Currently, waterborne coatings are widely used, but their poor anticorrosion performance compared with solvent-based coatings hinders their further application. In this study, a series of Zn5Mo2O11·5H2O@sulfonated graphene (SZMO@SG) composites are prepared using the template method. SZMO@SG is a type of two-dimensional material with a large diameter and low thickness compared to traditional zinc molybdate. Combining SZMO@SG with waterborne hydroxy acrylic latex and isocyanate, the polyurethane coatings with 3 wt% SZMO@SG achieve the best anticorrosion performance in the 3.5 wt% NaCl immersion test. In electrochemical impedance spectroscopy (EIS), the charge transfer resistance (Rct) of polyurethane coatings with 3 wt% SZMO@SG reaches 283,100 Ω·cm2 after soaking in a 3.5 wt% NaCl solution for 48 h. Its corrosion potential and corrosion current are only −0.453 V and 1.71 × 10−3 mA/cm2, respectively. After metal substrate corrosion, the metal substrate of polyurethane coatings with SZMO@SG contain more Mo, Zn and low-state Fe atoms. It confirms that a passivation film was deposited on the metal substrate and prevents Fe from oxidation. The elemental content and distribution of the coatings after the NaCl solution immersion test indicate that SZMO@SG may have the Na+ adsorption function." @default.
- W4307942374 created "2022-11-06" @default.
- W4307942374 creator A5003330572 @default.
- W4307942374 creator A5003547960 @default.
- W4307942374 creator A5005426960 @default.
- W4307942374 creator A5043910391 @default.
- W4307942374 creator A5044463764 @default.
- W4307942374 creator A5051461744 @default.
- W4307942374 creator A5055729207 @default.
- W4307942374 creator A5060667885 @default.
- W4307942374 date "2022-10-28" @default.
- W4307942374 modified "2023-10-01" @default.
- W4307942374 title "Preparation of Zn5Mo2O11·5H2O@Sulfonated Graphene by Template Method and Its Anticorrosion Mechanism in Polyurethane Coatings" @default.
- W4307942374 cites W1965750980 @default.
- W4307942374 cites W1967051366 @default.
- W4307942374 cites W1977129901 @default.
- W4307942374 cites W1977992622 @default.
- W4307942374 cites W1990680001 @default.
- W4307942374 cites W1991435740 @default.
- W4307942374 cites W1998359203 @default.
- W4307942374 cites W2010625630 @default.
- W4307942374 cites W2012517701 @default.
- W4307942374 cites W2015952543 @default.
- W4307942374 cites W2018256830 @default.
- W4307942374 cites W2033776528 @default.
- W4307942374 cites W2044195854 @default.
- W4307942374 cites W2061657681 @default.
- W4307942374 cites W2068222390 @default.
- W4307942374 cites W2078526822 @default.
- W4307942374 cites W2081767037 @default.
- W4307942374 cites W2084428764 @default.
- W4307942374 cites W2095571843 @default.
- W4307942374 cites W2105852111 @default.
- W4307942374 cites W2151311710 @default.
- W4307942374 cites W2219912278 @default.
- W4307942374 cites W2307869015 @default.
- W4307942374 cites W2332758556 @default.
- W4307942374 cites W2333777264 @default.
- W4307942374 cites W2341864066 @default.
- W4307942374 cites W2436876035 @default.
- W4307942374 cites W2546206300 @default.
- W4307942374 cites W2556780297 @default.
- W4307942374 cites W2560204397 @default.
- W4307942374 cites W2590472215 @default.
- W4307942374 cites W2738408209 @default.
- W4307942374 cites W2755545714 @default.
- W4307942374 cites W2790325340 @default.
- W4307942374 cites W2792896222 @default.
- W4307942374 cites W2793766699 @default.
- W4307942374 cites W2804601829 @default.
- W4307942374 cites W2883545536 @default.
- W4307942374 cites W2885271148 @default.
- W4307942374 cites W2885671202 @default.
- W4307942374 cites W2886174062 @default.
- W4307942374 cites W2898721939 @default.
- W4307942374 cites W2912710602 @default.
- W4307942374 cites W2922454839 @default.
- W4307942374 cites W2925103111 @default.
- W4307942374 cites W2928413254 @default.
- W4307942374 cites W2937942881 @default.
- W4307942374 cites W2955044724 @default.
- W4307942374 cites W2962761041 @default.
- W4307942374 cites W2969244139 @default.
- W4307942374 cites W2996303133 @default.
- W4307942374 cites W2999033956 @default.
- W4307942374 cites W3001532557 @default.
- W4307942374 cites W3008786968 @default.
- W4307942374 cites W3016944863 @default.
- W4307942374 cites W3023456076 @default.
- W4307942374 cites W3024042409 @default.
- W4307942374 cites W3036838777 @default.
- W4307942374 cites W3138408194 @default.
- W4307942374 cites W3168428888 @default.
- W4307942374 cites W3171037718 @default.
- W4307942374 cites W4214861330 @default.
- W4307942374 cites W4280513678 @default.
- W4307942374 cites W821264395 @default.
- W4307942374 doi "https://doi.org/10.3390/coatings12111634" @default.
- W4307942374 hasPublicationYear "2022" @default.
- W4307942374 type Work @default.
- W4307942374 citedByCount "1" @default.
- W4307942374 countsByYear W43079423742023 @default.
- W4307942374 crossrefType "journal-article" @default.
- W4307942374 hasAuthorship W4307942374A5003330572 @default.
- W4307942374 hasAuthorship W4307942374A5003547960 @default.
- W4307942374 hasAuthorship W4307942374A5005426960 @default.
- W4307942374 hasAuthorship W4307942374A5043910391 @default.
- W4307942374 hasAuthorship W4307942374A5044463764 @default.
- W4307942374 hasAuthorship W4307942374A5051461744 @default.
- W4307942374 hasAuthorship W4307942374A5055729207 @default.
- W4307942374 hasAuthorship W4307942374A5060667885 @default.
- W4307942374 hasBestOaLocation W43079423741 @default.
- W4307942374 hasConcept C127413603 @default.
- W4307942374 hasConcept C147789679 @default.
- W4307942374 hasConcept C150394285 @default.
- W4307942374 hasConcept C159985019 @default.
- W4307942374 hasConcept C171250308 @default.
- W4307942374 hasConcept C17525397 @default.