J. Mater. Sci. Technol. ›› 2021, Vol. 95: 95-104.DOI: 10.1016/j.jmst.2021.04.019
• Research Article • Previous Articles Next Articles
Yanqi Maa,1, Haowei Huangb,c,1, Hongda Zhouc, Michael Grahamc, James Smithc, Xinxin Shenga,*(
), Ying Chena, Li Zhanga, Xinya Zhangb, Elena Shchukinac, Dmitry Shchukinc
Received:2021-03-19
Revised:2021-04-07
Accepted:2021-04-09
Published:2021-12-30
Online:2021-05-25
Contact:
Xinxin Sheng
About author:* E-mail address: xinxin.sheng@gdut.edu.cn (X. Sheng).1Yanqi Ma and Haowei Huang contributed equally to this work.
Yanqi Ma, Haowei Huang, Hongda Zhou, Michael Graham, James Smith, Xinxin Sheng, Ying Chen, Li Zhang, Xinya Zhang, Elena Shchukina, Dmitry Shchukin. Superior anti-corrosion and self-healing bi-functional polymer composite coatings with polydopamine modified mesoporous silica/graphene oxide[J]. J. Mater. Sci. Technol., 2021, 95: 95-104.
Fig. 1. Experimental scheme showing fGO preparation using GO and MSNs as raw materials and incorporation of fGO into the composite WEP coating. Please refer to Supporting Information Section for experimental details.
Fig. 3. (a) FTIR spectra, (b) XRD patterns of MSNs, GO, mGO, and fGO; (c) TGA curves of BTA, GO, MSNs, mGO, and fGO; (d) release profiles of BTA in MSNs or fGO when facing different pH environments.
Fig. 5. The Bode modulus of (a) blank WEP, (c) GO/WEP, (e) mGO/WEP and (g) fGO/WEP and Bode phase angle of (b) blank WEP, (d) GO/WEP, (f) mGO/WEP and (h) fGO/WEP.
Fig. 7. Visual images (left) of blank WEP, GO/WEP, mGO/WEP and fGO/WEP before and after immersion in 3.5 wt.% NaCl solution for 240 hrs. The yellow/red arrows show the intersection of the two scratches made with a scalpel. The area of the coating exposed to the corrosive environment is 7.07 cm2. SEM images (right) of the intersection of the scratches of blank WEP, GO/WEP, mGO/WEP and fGO/WEP after immersion.
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