Title : Electro-catalytic degradation of phenol on several metal-oxide anodes.

Pub. Date : 2009 Mar 15

PMID : 18684560






3 Functional Relationships(s)
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Protein Name
Organism
1 The potential for oxygen evolution at the Ti/SnO(2)+Sb(2)O(3)/PbO(2) anode is highest, then Ti/SnO(2)+Sb(2)O(3)/MnO(x), following Ti/SnO(2)+Sb(2)O(3)/RuO(2)+PbO(2). Oxygen strawberry notch homolog 2 Homo sapiens
2 The potential for oxygen evolution at the Ti/SnO(2)+Sb(2)O(3)/PbO(2) anode is highest, then Ti/SnO(2)+Sb(2)O(3)/MnO(x), following Ti/SnO(2)+Sb(2)O(3)/RuO(2)+PbO(2). Oxygen strawberry notch homolog 2 Homo sapiens
3 The potential for oxygen evolution at the Ti/SnO(2)+Sb(2)O(3)/PbO(2) anode is highest, then Ti/SnO(2)+Sb(2)O(3)/MnO(x), following Ti/SnO(2)+Sb(2)O(3)/RuO(2)+PbO(2). Oxygen strawberry notch homolog 2 Homo sapiens