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Synthesis of MOFs/GO composite for corrosion resistance application on carbon steel

Two unreported metal–organic frameworks [Cu(6-Me-2,3-pydc)(1,10-phen)·7H(2)O](n) (namely Cu-MOF) and [Mn(2)(2,2′-bca)(2)(H(2)O)(2)](n) (namely Mn-MOF) were synthesized by a solvothermal method and their structures were characterized and confirmed by elemental analysis, X-ray single crystal diffracti...

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Autores principales: Wei, Wenchang, Liu, Zheng, Wei, Runzhi, Han, Guo-Cheng, Liang, Chuxin
Formato: Online Artículo Texto
Lenguaje:English
Publicado: The Royal Society of Chemistry 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9056312/
https://www.ncbi.nlm.nih.gov/pubmed/35518252
http://dx.doi.org/10.1039/d0ra05690a
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author Wei, Wenchang
Liu, Zheng
Wei, Runzhi
Han, Guo-Cheng
Liang, Chuxin
author_facet Wei, Wenchang
Liu, Zheng
Wei, Runzhi
Han, Guo-Cheng
Liang, Chuxin
author_sort Wei, Wenchang
collection PubMed
description Two unreported metal–organic frameworks [Cu(6-Me-2,3-pydc)(1,10-phen)·7H(2)O](n) (namely Cu-MOF) and [Mn(2)(2,2′-bca)(2)(H(2)O)(2)](n) (namely Mn-MOF) were synthesized by a solvothermal method and their structures were characterized and confirmed by elemental analysis, X-ray single crystal diffraction, Fourier infrared spectroscopy and thermogravimetric analysis. Cu-MOF/graphene (Cu-MOF/GR), Cu-MOF/graphene oxide (Cu-MOF/GO), Mn-MOF/graphene (Mn-MOF/GR) and Mn-MOF/graphene oxide (Mn-MOF/GO) composite materials were successfully synthesized by a solvothermal method and characterized and analyzed by PXRD, SEM and TEM. In order to study the corrosion inhibition properties of the Cu-MOF/GR, Cu-MOF/GO, Mn-MOF/GR and Mn-MOF/GO composite materials on carbon steel, they were mixed with waterborne acrylic varnish to prepare a series of composite coatings to explore in 3.5 wt% NaCl solution by electrochemical measurements and results showed that the total polarization resistance of the 3% Cu-MOF/GO and 3% Mn-MOF/GO composite coatings on the carbon steel surface were relatively large, and were 55 097 and 55 729 Ω cm(2), respectively, which could effectively protect the carbon steel from corrosion. After immersion for 30 days, the 3% Mn-MOF/GO composite still maintained high corrosion resistance, the |Z| values were still as high as 23 804 Ω cm(2). Therefore, MOFs compounded with GO can produce a synergistic corrosion inhibition effect and improve the corrosion resistance of the coating; this conclusion is well confirmed by the adhesion capability test.
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spelling pubmed-90563122022-05-04 Synthesis of MOFs/GO composite for corrosion resistance application on carbon steel Wei, Wenchang Liu, Zheng Wei, Runzhi Han, Guo-Cheng Liang, Chuxin RSC Adv Chemistry Two unreported metal–organic frameworks [Cu(6-Me-2,3-pydc)(1,10-phen)·7H(2)O](n) (namely Cu-MOF) and [Mn(2)(2,2′-bca)(2)(H(2)O)(2)](n) (namely Mn-MOF) were synthesized by a solvothermal method and their structures were characterized and confirmed by elemental analysis, X-ray single crystal diffraction, Fourier infrared spectroscopy and thermogravimetric analysis. Cu-MOF/graphene (Cu-MOF/GR), Cu-MOF/graphene oxide (Cu-MOF/GO), Mn-MOF/graphene (Mn-MOF/GR) and Mn-MOF/graphene oxide (Mn-MOF/GO) composite materials were successfully synthesized by a solvothermal method and characterized and analyzed by PXRD, SEM and TEM. In order to study the corrosion inhibition properties of the Cu-MOF/GR, Cu-MOF/GO, Mn-MOF/GR and Mn-MOF/GO composite materials on carbon steel, they were mixed with waterborne acrylic varnish to prepare a series of composite coatings to explore in 3.5 wt% NaCl solution by electrochemical measurements and results showed that the total polarization resistance of the 3% Cu-MOF/GO and 3% Mn-MOF/GO composite coatings on the carbon steel surface were relatively large, and were 55 097 and 55 729 Ω cm(2), respectively, which could effectively protect the carbon steel from corrosion. After immersion for 30 days, the 3% Mn-MOF/GO composite still maintained high corrosion resistance, the |Z| values were still as high as 23 804 Ω cm(2). Therefore, MOFs compounded with GO can produce a synergistic corrosion inhibition effect and improve the corrosion resistance of the coating; this conclusion is well confirmed by the adhesion capability test. The Royal Society of Chemistry 2020-08-13 /pmc/articles/PMC9056312/ /pubmed/35518252 http://dx.doi.org/10.1039/d0ra05690a Text en This journal is © The Royal Society of Chemistry https://creativecommons.org/licenses/by-nc/3.0/
spellingShingle Chemistry
Wei, Wenchang
Liu, Zheng
Wei, Runzhi
Han, Guo-Cheng
Liang, Chuxin
Synthesis of MOFs/GO composite for corrosion resistance application on carbon steel
title Synthesis of MOFs/GO composite for corrosion resistance application on carbon steel
title_full Synthesis of MOFs/GO composite for corrosion resistance application on carbon steel
title_fullStr Synthesis of MOFs/GO composite for corrosion resistance application on carbon steel
title_full_unstemmed Synthesis of MOFs/GO composite for corrosion resistance application on carbon steel
title_short Synthesis of MOFs/GO composite for corrosion resistance application on carbon steel
title_sort synthesis of mofs/go composite for corrosion resistance application on carbon steel
topic Chemistry
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9056312/
https://www.ncbi.nlm.nih.gov/pubmed/35518252
http://dx.doi.org/10.1039/d0ra05690a
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