in-situ reduced graphene oxide-polyvinyl alcohol composite coatings as protective layers on magnesium substrates
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2017
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Abstract
A simple and feasible method was developed to fabricate in-situ reduced graphene oxide-polyvinyl alcohol composite (GO-PVA) coatings as protective layers on magnesium substrates. Polyvinyl alcohol was used as an in-situ reductant to transform GO into reduced GO. Contiguous and uniform GO-PVA coatings were prepared on magnesium substrates by dip-coating method, and were further thermally treated at 120 °C under ambient condition to obtain in-situ reduced GO-PVA coatings. Owing to the reducing effect of PVA, thermal treatment at low temperature led to effective in-situ reduction of GO as confirmed by XRD, Raman, FTIR and XPS tests. The corrosion current density of magnesium substrates in 3.5 wt% NaCl solution could be lowered to its 1/25 when using in-situ reduced GO-PVA coatings as protective layers.
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zhang2017progressin-situ
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| Authors | ;Xingkai Zhang;Yan Zhou;Junyan Zhang |
| Journal | acta paediatrica scandinavica |
| Year | 2017 |
| DOI |
10.1016/j.pnsc.2017.04.016
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