Claims
- 1. Improved electrolytic processes where oxygen is generated at the anodes, the improvement comprising the step of:
- conducting said electrolysis process in an electrolytic cell having a platinum based amorphous metal alloy oxygen anode having the formula
- Pt.sub.p A.sub.a D.sub.d
- where
- A is one or more elements selected from the group consisting of Cr, Mo, W, Fe, Os, Ir, Cu, Ni, Rh, Pd, Ag, Ti, Ru, Nb, V, Ta and Au;
- D is one or more elements selected from the group consisting of B, C, Si, Al, Ge, P, As, Sb and Sn;
- p ranges from about 40 to 92;
- a ranges from about 0 to 40; and
- d ranges from about 8 to 60, with the provisos that p+a+d=100 and when D is Si or P, and A does not include Ir, Rh, Pd, Ti, Ru, Nb or Ta.
- 2. Improved electrolytic processes, as set forth in claim 1, wherein said platinum based amorphous metal alloy oxygen anode is at least 50 percent amorphous.
- 3. Improved electrolytic processes, as set forth in claim 1, wherein said platinum based amorphous metal alloy oxygen anode is at least 80 percent amorphous.
- 4. Improved electrolytic processes, as set forth in claim 1, wherein said platinum based amorphous metal alloy oxygen anode is about 100 percent amorphous.
- 5. Improved electrolytic processes, as set forth in claim 1, wherein said oxygen anode comprises Pt and Ge.
- 6. Improved electrolytic processes, as set forth in claim 1, wherein said oxygen anode comprises Pt.sub.75 Ge.sub.25.
- 7. Improved electrolytic processes, as set forth in claim 1, wherein said oxygen anode comprises Pt, Ge and Si.
- 8. Improved electrolytic processes, as set forth in claim 7, wherein said oxygen anode comprises Pt.sub.65 Ge.sub.15 Si.sub.20.
- 9. Improved electrolytic processes, as set forth in claim 1, wherein said oxygen anode comprises Pt, Ag and Si.
- 10. Improved electrolytic processes, as set forth in claim 9, wherein said oxygen anode comprises Pt.sub.72 Ag.sub.8 Si.sub.20.
- 11. Improved electrolytic processes, as set forth in claim 9, wherein said oxygen anode comprises Pt.sub.48 Ag.sub.32 Si.sub.20.
- 12. Improved electrolytic processes, as set forth in claim 1, wherein said oxygen anode comprises Pt, B and Si.
- 13. Improved electrolytic processes, as set forth in claim 12, wherein said oxygen anode comprises Pt.sub.75 B.sub.5 Si.sub.20.
- 14. Improved electrolytic processes, as set forth in claim 1, wherein said oxygen anode comprises Pt and B.
- 15. Improved electrolytic processes, as set forth in claim 14, wherein said oxygen anode comprises Pt.sub.80 B.sub.20.
- 16. Improved electrolytic processes, as set forth in claim 1, wherein said oxygen anode comprises Pt and Sb.
- 17. Improved electrolytic processes, as set forth in claim 16, wherein said oxygen anode comprises Pt.sub.80 Sb.sub.20.
- 18. Improved electrolytic processes, as set forth in claim 1, wherein said oxygen anode comprises Pt, Ge and Al.
- 19. Improved electrolytic processes, as set forth in claim 18, wherein said oxygen anode comprises Pt.sub.70 Ge.sub.15 Al.sub.15.
- 20. Improved electrolytic processes, as set forth in claim 1, wherein said oxygen anode comprises Pt, Ir and B.
- 21. Improved electrolytic processes, as set forth in claim 20, wherein said oxygen anode comprises Pt.sub.60 Ir.sub.20 B.sub.20.
- 22. Improved electrolytic processes, as set forth in claim 1, wherein said platinum based amorphous metal alloy oxygen anode has a thickness of up to about 100 microns.
- 23. Improved electrolytic processes, as set forth in claim 1, wherein electrolysis is conducted at a voltage range of from about 1.10 to 2.50 volts (SCE) and current densities of from about 10 to 2000 mA/cm.sup.2.
- 24. Improved electrolytic processes, as set forth in claim 1, wherein electrolysis is conducted at a temperature range of from about 0.degree. to about 100.degree. C.
- 25. Improved electrolytic processes, as set forth in claim 1, wherein A is one or more elements selected from the group consisting of Cr, Mo, W, Fe, Os, Cu, Ni, Ag, V, Au and mixtures thereof.
- 26. Improved electrolytic processes, as set forth in claim 1, where D is one or more elements selected from the group consisting of B, Al, Ge, As, Sb, Sn and mixtures thereof.
- 27. Improved electrolytic processes where oxygen is generated at the anodes, the improvement comprising the step of:
- conducting said electrolysis process in an electrolytic cell having a platinum based amorphous metal alloy oxygen anode having the formula
- Pt.sub.p A.sub.a D.sub.d
- where
- A is one or more elements selected from the group consisting of Cr, Mo, W, Fe, Os, Ir, Cu, Ni, Rh, Pd, Ag, Ti, Ru, Nb, V, Ta and Au;
- D is one or more elements selected from the group consisting of B, C, Si, Al, Ge, P, As, Sb and Sn;
- p ranges from about 40 to 92;
- a ranges from about more than 5 to 40; and
- d ranges from about 8 to 60, with the provisos that p+a+d=100 and when D is Si or P, A does not include Ir, Rh, Pd, Ti, Ru, Nb or Ta.
CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation of application Ser. No. 705,688, filed Feb. 26, 1985, now abandoned, which is a continuation-in-part of Ser. No. 606,275, filed May 2, 1984, which is now abandoned.
US Referenced Citations (10)
Foreign Referenced Citations (6)
Number |
Date |
Country |
105453 |
Jan 1980 |
JPX |
105454 |
Jan 1980 |
JPX |
150148 |
Apr 1980 |
JPX |
107439 |
Dec 1981 |
JPX |
2023177 |
May 1979 |
GBX |
2146660 |
Nov 1985 |
GBX |
Non-Patent Literature Citations (3)
Entry |
"The Anodic Polarization Behavior of Amorphous Pd-Ti-P Alloys in NaCl Solutions" Electrochimica Acta, 25, pp. 1215-1220 (1980). |
"Anodic Characteristics of Amorphous Ternary Palladium-Phosphorus Alloys Containing Ruthenium, Rhodium, Iridium or Platinum in a Hot Concentrated Sodium Chloride Solution" Journal of Applied Electrochemistry, 13, pp. 295-306 (1983). |
"Anodic Characteristics of Amorphous Palladium-Iridium-Phosphorus Alloys in a Hot Concentrated Sodium Chloride Solution" Journal of Non-Crystalline Solids, 54, pp. 85-100 (1983). |
Continuations (1)
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Number |
Date |
Country |
Parent |
705688 |
Feb 1985 |
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Continuation in Parts (1)
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Number |
Date |
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Parent |
606275 |
May 1984 |
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