Claims
- 1. A detector of the type which has a gas component detecting element comprising a sintered body of particles of a metal oxide which changes in its electrical resistance depending on relative atmosphere of combustible components in an exhaust gas, catalyst particles being supported on the particles of metal oxide, wherein the catalyst particles comprise fine catalyst particles of about 1 nm-about 30 nm and coarse catalyst particles of at least about 100 nm, the fine catalyst particles and the coarse catalyst particles are supported on the particles of the metal oxide, the element being formed by the steps of:
- preparing particles of a metal oxide,
- calcining the particles of the metal oxide,
- subjecting the calcined particles from said calcining step to a treatment for a enlarging a specific surface area of the calcined particles and to increase surface defects thereof,
- supporting catalyst particles on the surface of the particles subjected to the enlargement treatment in said subjecting step.
- sintering the particles which support the catalyst particles; and
- forming the gas component detecting element from the sintered particles.
- 2. A detector according to claim 1, wherein the particles of the metal oxide are titanium dioxide and the catalyst particles comprise a mixture of platinum-rhodium.
- 3. A gas component detecting element for a detector which has a sintered body of particles of a metal oxide which changes in its electrical resistance depending on relative atmosphere of combustible components in an exhaust gas, having catalyst particles supported on the surface of particles of the metal oxide, the element being formed by a method comprising the following steps:
- preparing particles of a metal oxide,
- calcining the particles of the metal oxide,
- subjecting the calcined particles from said calcining step to a treatment for a enlarging a specific surface area of the calcined particles and to increase surface defects thereof,
- supporting catalyst particles on the surface of the particles subjected to the enlargement treatment in said subjecting step,
- sintering the particles which support the catalyst particles; and
- forming the gas component detecting element from the sintered particles.
- 4. A gas component detecting element for detectors which comprises a sintered body of particles of titanium dioxide which changes in its electrical resistance depending on relative atmosphere of combustible components in an exhaust gas, catalyst particles being supported on the surface of the particles of titanium dioxide, the detector being formed by a method comprising the following steps:
- preparing the particles of titanium dioxide,
- calcining the particles of titanium dioxide,
- subjecting the calcined particles from said calcining step to a grinding treatment so that a ratio of specific surface area A.sub.1 of the calcined particles before being subjected to grinding and a specific surface area A.sub.2 of the particles after being subjected to grinding satisfies the relation A.sub.1 /A.sub.2 <1.0, and to thereby increase surface defects thereof,
- supporting catalyst particles on surfaces of the particles subjected to the grinding treatment, and sintering the particles which support to the catalyst particles; and
- forming the gas component detecting element from the sintered particles.
- 5. A gas component detecting element for detectors comprising an electrical insulating substrate and the gas component detecting element having a sintered body of particles of titanium dioxide which changes in electrical resistance depending on a relative atmosphere of combustible components in an exhaust gas, catalyst particles being supported on the surface of the particles of titanium dioxide, the element being formed by the following steps:
- preparing the particles of titanium dioxide,
- calcining the particles of titanium dioxide,
- subjecting the calcined particles to a grinding treatment so that a ratio of a specific surface area A.sub.1 of the specific surface area A.sub.2 of the particles after being subjected to grinding satisfies the relation A.sub.1 /A.sub.2 <1.0,
- impregnating the particles of titanium dioxide subjected to the grinding treatment with a mixed solution of chloroplatinic acid and rhodium chloride,
- adding an organic binder to the particles of titanium dioxide impregnated with the mixed solution to obtain a paste,
- providing the paste including particles of titanium dioxide on an electrical insulating substrate in the form of a film at a given thickness, and
- sintering the particles of titanium dioxide provided on the substrate at 800.degree.-1300.degree. C.
Priority Claims (1)
Number |
Date |
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1-236328 |
Sep 1989 |
JPX |
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Parent Case Info
This is a division of application Ser. No. 07/580,970, filed Sep. 12, 1990, now U.S. Pat. No. 5,182,136 issued Jan. 26, 1993.
US Referenced Citations (7)
Foreign Referenced Citations (3)
Number |
Date |
Country |
55-74452 |
Jun 1980 |
JPX |
56-112638 |
Sep 1981 |
JPX |
59-37779 |
Sep 1984 |
JPX |
Non-Patent Literature Citations (2)
Entry |
Journal of American Chemical Society, May 23, 1979, 101, 11, pp. 2870-2875, Horsley "A Molecular Orbital Study of String Metal-Support Interaction Between Platinum and Titanium Dioxide". |
Journal of Catalysis 59, pp. 293-302, 1979 Baker et al. "Electron Microscopy of Supported Metal Particles". |
Divisions (1)
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Number |
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Parent |
580970 |
Sep 1990 |
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