Fuel cell catalyst including carbon support particles with metal carbide layer and catalytic material and fuel cell using the same
View Patent ↗A supported catalyst includes a plurality of support particles that each include a carbon support and a layer disposed around the carbon support. The layer is selected from a metal carbide, metal oxycarbide, and combinations thereof. A catalytic material is disposed on the layers of the support particles.
1. A supported catalyst comprising:
a plurality of support particles, the support particles each including a carbon support and a layer disposed around the carbon support, the layer being selected from a group consisting of metal carbide, metal oxycarbide, and combinations thereof, wherein a metal of the layer consists of nickel and molybdenum; and
a catalytic material disposed on the layers of the support particles.
2. The supported catalyst as recited in claim 1 , wherein the layer includes a sub-stoichiometric amount of oxygen relative to an amount of the metal in the layer.
3. The supported catalyst as recited in claim 1 , wherein the metal of the layer includes particles having a particle size less than 100 nm.
4. The supported catalyst as recited in claim 1 , wherein the metal of the layer includes particles having a particle size less than 30 nm.
5. The supported catalyst as recited in claim 1 , wherein the metal of the layer includes particles having a particle size less than 10 nm.
6. The supported catalyst as recited in claim 1 , wherein the catalytic material comprises platinum.
7. The supported catalyst as recited in claim 1 , wherein the carbon supports have an average surface area of 100-2500 m 2 /g.
8. The supported catalyst of claim 1 wherein the layer is a metal oxycarbide, the metal oxycarbide being formed by treatment of the metal in an oxygen environment.
9. A supported catalyst, comprising:
a plurality of support particles, the support particles each including a carbon support and a layer disposed around the carbon support, the layer including a metal oxycarbide, wherein a metal of the layer consists of nickel and molybdenum; and
a catalytic material disposed on the layers of the support particles.
10. The supported catalyst as recited in claim 9 , wherein the carbon support has an average surface area of 100-2500 m 2 /g.
11. A fuel cell comprising:
an electrolyte;
an anode catalyst and a cathode catalyst disposed on respective opposing sides of the electrolyte; and
interconnects located adjacent to the anode catalyst and the cathode catalyst for delivering reactants, and wherein at least one of the anode catalyst or the cathode catalyst includes a plurality of support particles, the support particles each having a carbon support and a layer disposed around the carbon support, the layer being selected from a group consisting of metal carbide, metal oxycarbide, and combinations thereof, wherein a metal of the layer consists of nickel and molybdenum, and a catalytic material disposed on the layers of the support particles.
12. The fuel cell of claim 11 wherein the layer is a metal oxycarbide, the metal oxycarbide being formed by treatment of the metal in an oxygen environment.