Platinum-vanadium-iron fuel cell electrocatalyst
A fuel cell electrocatalyst that contains platinum, vanadium, and iron. In one embodiment, the fuel cell electrocatalyst has a concentration of platinum that is less than 50 atomic percent. In another embodiment, the fuel cell electrocatalyst has a concentration of vanadium that is greater than 25 atomic percent.
1 . A catalyst for use in oxidation or reduction reactions, the catalyst comprising platinum at a concentration that is less than 50 atomic percent, vanadium, and iron.
2 . The catalyst of claim 1 consisting essentially of platinum at a concentration that is less than 50 atomic percent, vanadium, and iron.
3 . The catalyst of claim 1 wherein the catalyst is an alloy comprising platinum at a concentration that is less than 50 atomic percent, vanadium, and iron.
4 . The catalyst of claim 1 wherein the concentration of platinum is between about 25 and about 40 atomic percent.
5 . The catalyst of claim 1 wherein the vanadium is at a concentration that is no greater than about 70 atomic percent.
6 . The catalyst of claim 1 wherein the iron is at a concentration that is no greater than about 70 atomic percent.
7 . The catalyst of claim 1 wherein the platinum is at a concentration that is at least about 5 atomic percent, the vanadium is at a concentration that is no greater than about 70 atomic percent, and the iron is at a concentration that is no greater than about 70 atomic percent.
8 . The catalyst of claim 1 wherein the platinum is at a concentration that is between about 10 and about 45 atomic percent, the vanadium is at a concentration that is between about 10 and about 60 atomic percent, and the iron is at a concentration that is between about 10 and about 60 atomic percent.
9 . The catalyst of claim 1 wherein the platinum is at a concentration that is between about 20 and about 40 atomic percent, the vanadium is at a concentration that is between about 20 and about 50 atomic percent, and the iron is at a concentration that is between about 20 and about 50 atomic percent.
10 . The catalyst of claim 1 wherein the platinum is at a concentration that is between about 25 and about 40 atomic percent, the vanadium is at a concentration that is between about 30 and about 45 atomic percent, and the iron is at a concentration that is between about 25 and about 40 atomic percent.
11 . The catalyst of claim 1 wherein the platinum is at a concentration that is between about 35 and about 45 atomic percent, the vanadium is at a concentration that is no greater than about 10 atomic percent, and the iron is at a concentration that is between about 50 and about 60 atomic percent.
12 . The catalyst of claim 1 wherein the platinum is at a concentration that is between about 30 and about 40 atomic percent, the vanadium is at a concentration that is between about 50 and about 60 atomic percent, and the iron is at a concentration that no greater than about 10 atomic percent.
13 . A catalyst for use in oxidation or reduction reactions, the catalyst comprising platinum, vanadium at a concentration that is greater than 25 atomic percent, and iron.
14 . The catalyst of claim 13 wherein the catalyst consists essentially of platinum, vanadium at a concentration that is greater than 25 atomic percent, and iron.
15 . The catalyst of claim 13 wherein the catalyst is an alloy.
16 . A supported electrocatalyst powder for use in electrochemical reactor devices, the supported electrocatalyst powder comprising the catalyst of claim 13 and electrically conductive support particles upon which the catalyst is dispersed.
17 .- 33 . (canceled)
34 . The catalyst of claim 1 wherein the catalyst is an alloy.
35 . A supported electrocatalyst powder for use in electrochemical reactor devices, the supported electrocatalyst powder comprising the catalyst of claim 1 and electrically conductive support particles upon which the catalyst is dispersed.