ENHANCED DURABILITY OF FUEL CELL METALLIC BIPOLAR PLATE
A metallic bipolar plate has a main body coated with an overlayer. The overlayer can include a graphite-based compound. The overlayer can also include electrically conductive oxides. The electrically conductive oxides can include a member selected from a list consisting of RuIrO x (Ru rich), IrRuO x (Ir rich), RuO x , NbO x , IrO x , and combinations thereof.
1 . A bipolar plate comprising:
a metallic main body; and
an overlayer disposed on the metallic main body, the overlayer including a graphite-based compound and a transition metal oxide.
2 . The bipolar plate of claim 1 , wherein the graphite-based compound includes graphene.
3 . The bipolar plate of claim 2 , wherein the graphene includes graphene oxide.
4 . The bipolar plate of claim 1 , wherein the transition metal oxide includes a member selected from a group consisting of ruthenium oxide, iridium oxide, niobium oxide, and combinations thereof.
5 . The bipolar plate of claim 1 , wherein the transition metal oxide includes a member selected from a group consisting of RuIrO x (Ru rich), IrRuO x (Ir rich), RuO x /NbO x , IrO x /NbO x and combinations thereof.
6 . The bipolar plate of claim 1 , wherein the overlayer includes an admixture of the graphite-based compound and the transition metal oxide.
7 . The bipolar plate of claim 1 , wherein the overlayer includes:
a first overlayer disposed on the metallic main body, the first overlayer including the graphite-based compound; and
a second overlayer disposed on the first overlayer, the second overlayer including the transition metal oxide.
8 . The bipolar plate of claim 1 , wherein the overlayer includes:
a first overlayer disposed on the metallic main body, the first overlayer including the graphite-based compound;
a second overlayer disposed on the first overlayer, the second overlayer including the transition metal oxide; and
a third overlayer disposed on the second overlayer, the third overlayer including the graphite-based compound.
9 . The bipolar plate of claim 1 , wherein the overlayer includes:
a plurality of first overlayers, one of the first overlayers disposed directly on the metallic main body, the plurality of first overlayers including the graphite-based compound; and
a plurality of second overlayers, each of the second overlayers disposed between two of the first overlayers, the plurality of second overlayers including the transition metal oxide.
10 . The bipolar plate of claim 1 , wherein:
the metallic main body includes one of stainless steel and titanium;
the graphite-based compound includes graphene oxide;
the transition metal oxide includes a member selected from a group consisting of ruthenium oxide, iridium oxide, niobium oxide, and combinations thereof; and
the overlayer includes an admixture of graphene and the transition metal oxide.
11 . The bipolar plate of claim 1 , wherein:
the metallic main body includes one of stainless steel and titanium;
the graphite-based compound includes graphene oxide;
the transition metal oxide includes a member selected from a group consisting of ruthenium oxide, iridium oxide, niobium oxide, and combinations thereof; and
the overlayer includes:
a plurality of first overlayers, one of the first overlayers disposed directly on the metallic main body, the plurality of first overlayers including the graphite-based compound; and
a plurality of second overlayers, each of the second overlayers disposed between two first overlayers, the plurality of second overlayers including the transition metal oxide.
12 . The bipolar plate of claim 1 , wherein:
the metallic main body includes one of stainless steel and titanium;
the transition metal oxide includes a member selected from a group consisting of RuIrO x (Ru rich), IrRuO x (Ir rich), RuO x /NbO x , IrO x /NbO x and combinations thereof; and
the overlayer includes:
a plurality of first overlayers, one of the first overlayers disposed directly on the metallic main body, the plurality of first overlayers including the graphite-based compound; and
a plurality of second overlayers, each of the second overlayers disposed between two first overlayers, the plurality of second overlayers including the transition metal oxide.
13 . The bipolar plate of claim 1 , wherein the overlayer includes the transition metal oxide in an amount that reduces oxidation-based corrosion of the metallic main body as compared to when the overlayer includes the graphite-based compound but not the transition metal oxide.
14 . A fuel cell stack comprising a bipolar plate according to claim 1 , wherein the bipolar plate is disposed between two membrane electrode assemblies.
15 . A vehicle comprising a fuel cell stack according to claim 14 .
16 . A method for manufacturing a bipolar plate, comprising:
providing a bipolar plate including a metallic main body; and
disposing an overlayer on the metallic main body, the overlayer including a graphite-based compound and a transition metal oxide.
17 . The method of claim 16 , wherein disposing the overlayer on the metallic main body includes applying the overlayer to the metallic main body by one of ultrasonic spraying, chemical vapor deposition, and dip coating.
18 . The method of claim 16 , wherein disposing the overlayer on the metallic main body includes disposing an admixture of the graphite-based compound and the transition metal oxide on the metallic main body.
19 . The method of claim 16 , wherein disposing the overlayer on the metallic main body includes:
disposing a first overlayer on the metallic main body, the first overlayer including the graphite-based compound;
disposing a second overlayer on the first overlayer, the second overlayer including the transition metal oxide; and
disposing a third overlayer on the second overlayer, the third overlayer including graphene.
20 . The method of claim 16 , wherein disposing the overlayer on the metallic main body includes:
disposing a plurality of first overlayers on the metallic main body, one of the first overlayers disposed directly on the metallic main body, the plurality of first overlayers including the graphite-based compound; and
disposing a plurality of second overlayers on the metallic main body, each of the second overlayers disposed between two of the first overlayers, the plurality of second overlayers including the transition metal oxide.