IP Library › Granted Patent US 12,181,436
Granted Patent B2
US 12,181,436 · App. 17/356,968 · Granted Dec 31, 2024

Gas sensor element and gas sensor

Inventors: Chika Kuroki (Kariya, JP); Satoshi Suzuki (Kariya, JP)
Assignee: DENSO CORPORATION
G01N27/4071G01N27/4067G01N27/4075G01N27/409G01N27/41
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Quick Facts
Patent No.
US 12,181,436
App. No.
17/356,968
Granted
Dec 31, 2024
Kind
B2
Abstract

A gas sensor element includes a solid electrolyte body, a measurement electrode film, and a measured-gas intake port. The measurement electrode film includes a noble metal region, a solid electrolyte region, and a mixed region in which a noble metal and a solid electrolyte are mixed together. The measurement electrode film has a structure in which a first average thickness of the mixed region within a first region is greater than a second average thickness of the mixed region within a second region that is closer to a center of the measurement electrode film than the first region in a direction along an intake direction of a measured gas is. The first region is a region from an electrode end on the measured-gas intake port side to ¼ of an overall length of the measurement electrode film in the direction along the intake direction of the measured gas.

Claims (54)

1. A gas sensor element comprising:

a solid electrolyte body;

a measurement electrode film that is formed on a main surface of the solid electrolyte body and exposed to a measured gas; and

a measured-gas intake port into which the measured gas is introduced, wherein

the measurement electrode film has a noble metal region that includes a noble metal, a solid electrolyte region that includes a solid electrolyte, and a mixed region in which the noble metal and the solid electrolyte are mixed together, and

the measurement electrode film has a structure in which a first average thickness of the mixed region that is present within a first region from an electrode end on a measured-gas intake port side to ¼ of an overall length of the measurement electrode film in a direction along an intake direction of the measured gas is greater than a second average thickness of the mixed region that is present within a second region that is closer to a center of the measurement electrode film than the first region in the direction along the intake direction is.

2. The gas sensor element according to claim 1 , wherein:

the first average thickness of the mixed region within the first region is larger than a third average thickness of the mixed region that is present in the measurement electrode film.

3. The gas sensor element according to claim 2 , wherein:

the first average thickness of the mixed region within the first region is equal to or greater than 0.1 micrometers.

4. The gas sensor element according to claim 3 , wherein:

the third average thickness of the mixed region that is present in the measurement electrode film is equal to or less than 0.08 micrometers.

5. The gas sensor element according to claim 4 , wherein:

the main surface is a first main surface, the solid electrolyte body has a second main surface that is positioned on a side opposite to the first main surface, a reference electrode film that is exposed to a reference gas is formed on the second main surface, and an electrode end on a measured-gas intake port side of the reference electrode film is arranged closer to the measured-gas intake port than the electrode end on the measured-gas intake port side of the measurement electrode film is.

6. The gas sensor element according to claim 5 , wherein:

the gas sensor element further includes a heater that heats the gas sensor element; and

the heater is configured such that a highest temperature position in a heat generation distribution in the measurement electrode film is closer to the measured-gas intake port than the center of the measurement electrode film is in the direction along the intake direction.

7. The gas sensor element according to claim 6 , wherein:

the gas sensor element includes

a measured gas space into which the measured gas is introduced from the measured-gas intake port,

a reference-gas intake port into which the reference gas is introduced, and

a reference gas space into which the reference gas is introduced from the reference gas intake port;

the solid electrolyte body is arranged between the measured gas space and the reference gas space, the first main surface of the solid electrolyte body faces the measured gas space, and the second main surface faces the reference gas space; and

the gas sensor element has a shape that is elongated in a longitudinal direction, the measured-gas intake port is formed in a tip end in the longitudinal direction of the gas sensor element, and the reference-gas intake port is formed on a side opposite to the tip end in the longitudinal direction.

8. The gas sensor element according to claim 2 , wherein:

the third average thickness of the mixed region that is present in the measurement electrode film is equal to or less than 0.08 micrometers.

9. The gas sensor element according to claim 1 , wherein:

the first average thickness of the mixed region within the first region is equal to or greater than 0.1 micrometers.

10. The gas sensor element according to claim 1 , wherein:

the main surface is a first main surface, the solid electrolyte body has a second main surface that is positioned on a side opposite to the first main surface, a reference electrode film that is exposed to a reference gas is formed on the second main surface, and an electrode end on a measured-gas intake port side of the reference electrode film is arranged closer to the measured-gas intake port than the electrode end on the measured-gas intake port side of the measurement electrode film is.

11. The gas sensor element according to claim 10 , wherein:

the gas sensor element includes

a measured gas space into which the measured gas is introduced from the measured-gas intake port,

a reference-gas intake port into which the reference gas is introduced, and

a reference gas space into which the reference gas is introduced from the reference gas intake port;

the solid electrolyte body is arranged between the measured gas space and the reference gas space, the first main surface of the solid electrolyte body faces the measured gas space, and the second main surface faces the reference gas space; and

the gas sensor element has a shape that is elongated in a longitudinal direction, the measured-gas intake port is formed in a tip end in the longitudinal direction of the gas sensor element, and the reference-gas intake port is formed on a side opposite to the tip end in the longitudinal direction.

12. The gas sensor element according to claim 1 , wherein:

the gas sensor element further includes a heater that heats the gas sensor element; and

the heater is configured such that a highest temperature position in a heat generation distribution in the measurement electrode film is closer to the measured-gas intake port than the center of the measurement electrode film is in the direction along the intake direction.

13. The gas sensor element according to claim 12 , wherein:

the gas sensor element includes

a measured gas space into which the measured gas is introduced from the measured-gas intake port,

a reference-gas intake port into which the reference gas is introduced, and

a reference gas space into which the reference gas is introduced from the reference gas intake port;

the solid electrolyte body is arranged between the measured gas space and the reference gas space, the first main surface of the solid electrolyte body faces the measured gas space, and the second main surface faces the reference gas space; and

the gas sensor element has a shape that is elongated in a longitudinal direction, the measured-gas intake port is formed in a tip end in the longitudinal direction of the gas sensor element, and the reference-gas intake port is formed on a side opposite to the tip end in the longitudinal direction.

14. A gas sensor comprising:

a gas sensor element comprising:

a solid electrolyte body;

a measurement electrode film that is formed on a main surface of the solid electrolyte body and exposed to a measured gas; and

a measured-gas intake port into which the measured gas is introduced, wherein

the measurement electrode film has a noble metal region that includes a noble metal, a solid electrolyte region that includes a solid electrolyte, and a mixed region in which the noble metal and the solid electrolyte are mixed together, and

the measurement electrode film has a structure in which a first average thickness of the mixed region that is present within a first region from an electrode end on a measured-gas intake port side to ¼ of an overall length of the measurement electrode film in a direction along an intake direction of the measured gas is greater than a second average thickness of the mixed region that is present within a second region that is closer to a center of the measurement electrode film than the first region in the direction along the intake direction is.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 27, 2021
From: KUROKI, CHIKA; SUZUKI, SATOSHI
To: DENSO CORPORATION
Reel/Frame 056984/0811 →
Priority Claims (1)
JP 2018-246366 · Dec 28, 2018 · national
Continuity (2)
Continuation PCTJP2019043579 · Nov 7, 2019
Related Publication 20210318262A1 · Oct 14, 2021