Electrolysis electrode
A water purification anode has a first semiconductor contacting a second semiconductor at a heterojunction. The second semiconductor includes TiO 2 and excludes bismuth and niobium. The first semiconductor includes iridium. In some instances, the anode includes a current collector in direct physical contact with the first semiconductor. The anode can be arranged in water such that at least one face of the second semiconductor is in direct physical contact with the water.
1. A water purification system, comprising:
an anode having a first material comprising Ir 0.7 Ta 0.3 O y , wherein y is less than 10, contacting a second material consisting of TiO 2 at a heterojunction,
at least one face of the second material being in direct contact with water that includes organic materials,
the second material excluding bismuth and niobium.
2. The system of claim 1 , wherein the first material is in direct contact with a current collector and the second material contacts the first material at the heterojunction.
3. The system of claim 1 , wherein the first material includes one or more stabilizing elements selected from the group consisting of Ta, Si, Sn, Ti, Sb, and Zr.
4. The system of claim 1 , wherein the first material consists of iridium, tantalum, and oxygen.
5. The system of claim 1 , wherein the first material excludes bismuth and niobium.
6. The system of claim 5 , wherein the first material excludes dopants.
7. The system of claim 1 , wherein hydroxyl radicals are physisorbed to the anode.
8. A water purification anode, comprising:
a current collector having a first face and second face;
a first material having a first face and a second face, said first face of the first material in contact with one of the first face or second face of the current collector;
a second material having a first face and a second face, said first face of the second material contacting the second face of the first material at a heterojunction,
the second face of the second material being in direct contact with water that includes organic materials,
the second material consisting of TiO 2 , and
the first material comprising Ir 0.7 Ta 0.3 O y , wherein y is less than 10.
9. A method of operating a water purification system, comprising:
contacting an anode with water that includes organic materials; and
applying to the anode an anodic potential that is sufficient to generate hydroxyl radicals bound to the surface of the anode,
the anode including a first material contacting a second material at a heterojunction,
the second material consisting of TiO 2 , and
the first material comprising Ir 0.7 Ta 0.3 O y , wherein y is less than 10.