Claims
- 1. A method of producing a hydrocarbon sensor comprising a solid electrolytic substrate formed of a mixed ion conductor, an anode on one major surface of said substrate, and a cathode on the other major surface of said substrate which cathode is opposed to the anode, wherein The cathode is formed by:applying a Au-containing paste to the solid electrolytic substrate to form a Au-containing film; firing said film to form an Au layer; applying a Al containing paste mainly containing Al to the Au layer to form a Al-containing film; and then, firing the Al-containing film to form an Au—Al alloyed layer which constitutes the cathode.
- 2. The method of producing a hydrocarbon sensor according to claim 1, wherein the alloyed layer of the cathode includes an Al—Au intermediate phase.
- 3. The method of producing a hydrocarbon sensor according to claim 1, wherein the alloyed layer of the cathode includes a metal Al phase and an Al—Au intermediate phase.
- 4. The method of producing a hydrocarbon sensor according to claim 1, wherein the alloyed layer of the cathode comprises a first layer including an Al—Au intermediate phase in contact with the surface of the solid electrolyte and a second layer including a metal Al phase which covers the first layer.
- 5. A method of producing a hydrocarbon sensor comprising a solid electrolytic substrate formed of a mixed ion conductor, an anode on one major surface of said substrate and a cathode on the other major surface of said substrate which cathode is opposed to the anode, wherein the cathode is formed by:applying a paste mainly containing Au and Al to the solid electrolytic substrate to form a Au—Al containing film; and firing said film to form an alloyed layer including Au and Al which constitute the cathode.
- 6. The method of producing a hydrocarbon sensor according to claim 5, wherein the alloyed layer of the cathode includes an Al—Au intermediate phase.
- 7. The method of producing a hydrocarbon sensor according to claim 5, wherein the alloyed layer of the cathode includes a metal Al phase and an Al—Au intermediate phase.
- 8. The method of producing a hydrocarbon sensor according to one of claim 5, wherein the alloyed layer of the cathode is a sintered layer including Au and Al.
Priority Claims (1)
Number |
Date |
Country |
Kind |
11-094934 |
Apr 1999 |
JP |
|
Parent Case Info
This application is a divisional application of application Ser. No. 09/539,317, filed Mar. 30, 2000.
US Referenced Citations (7)
Foreign Referenced Citations (2)
Number |
Date |
Country |
10-300718 |
Nov 1998 |
JP |
11-337518 |
Dec 1999 |
JP |
Non-Patent Literature Citations (3)
Entry |
“Function and Design of ZrO2 Exhaust Oxygen Sensors”, pp. 2-1 through 2-7. Author and date unknown.* |
“Limiting Current Sensor Using Proton Conduction Thin-Film”, T. Inaba et al., Chemical Sensors, Japan Association of Chemical Sensors, vol. 11, Supplement B, pp. 145-148 (1995). Month Unknown. |
“Galvanic Cell Type Hydrocarbon Sensor Using a High-Temperature-Type Protonic Conductor”, T. Hibino et al., Proceeding of the 61st Meeting of the Electrochemical Society of Japan, p. 99 (1994). Month Unknown. |