IPC분류정보
국가/구분 |
United States(US) Patent
등록
|
국제특허분류(IPC7판) |
|
출원번호 |
US-0464248
(1983-02-07)
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발명자
/ 주소 |
- Lawless William N. (c/o CeramPhysics
- Inc.
- P.O. Box 346 Westerville OH 43081)
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인용정보 |
피인용 횟수 :
19 인용 특허 :
2 |
초록
▼
New oxygen ion conducting ceramic materials represented by the formulas Ni(Nb1-xMx)2O6-x and Ni2(Nb1-xMx)2O7-x, wherein M is selected from the group consisting of Zr+4, Ti+4, Sn+4, Sm+4, Hf+4 and Ce+4 and x is a value from 0 to 0.2, are disclosed. These materials, along with Bi2O3 in solid solution
New oxygen ion conducting ceramic materials represented by the formulas Ni(Nb1-xMx)2O6-x and Ni2(Nb1-xMx)2O7-x, wherein M is selected from the group consisting of Zr+4, Ti+4, Sn+4, Sm+4, Hf+4 and Ce+4 and x is a value from 0 to 0.2, are disclosed. These materials, along with Bi2O3 in solid solution with Y2O3 or Nb2O5, may be used in a sensor for determining the oxygen partial pressure of a first gas relative to the oxygen partial pressure of a second gas. The oxygen sensor includes a plurality of layers of the ceramic material and of layers of a porous metallic conductor are arranged to form a body having alternating ceramic and metallic layers, with first alternate ones of the metallic layers being exposed along one side of the body and second alternate ones of the metallic layers being exposed along an opposite side of the body. An electrode connects the first alternate metallic layers, and a second electrode connects the second alternate metallic layers. The device may also be used as a fuel cell, and a method of constructing the device is disclosed.
대표청구항
▼
An oxygen sensor, comprising: at least two layers of a porous metallic conductor; at least one layer of an electrolytic ceramic material Ni2(Nb1-xMx)2O7-x wherein M is selected from the group consisting of Zr+4, Ti+4, Sn+4, Sm+4, Hf+4, Ce+4 and mixtures thereof, and wherein x is from 0 to 0.2; said
An oxygen sensor, comprising: at least two layers of a porous metallic conductor; at least one layer of an electrolytic ceramic material Ni2(Nb1-xMx)2O7-x wherein M is selected from the group consisting of Zr+4, Ti+4, Sn+4, Sm+4, Hf+4, Ce+4 and mixtures thereof, and wherein x is from 0 to 0.2; said layer of ceramic material being disposed between said layers of said porous metallic conductor and cooperating therewith to form at least a portion of a body for said sensor; a first electrode connected to a first of said layers of said porous metallic conductor; and a second electrode connected to a second of said layers of said porous metallic conductor. A sensor for determining the oxygen partial pressure of a first gas relative to the oxygen partial pressure of a second gas, said first and second gases being maintained in separate relationship, the sensor comprising: a plurality of layers of an electrolytic ceramic material; a plurality of layers of a porous metallic conductor; each of said layers of porous metallic conductor being interposed between and contained by two of said layers of ceramic material so as to form a solid body of alternating ceramic and metallic layers, said body having first and second opposing sides; first alternate ones of said layers of porous metallic conductor being exposed along said first side of said body; second alternate ones of said layers of porous metallic conductor being exposed along said second side of said body; a first electrode connecting said first alternate metallic layers; and a second electrode connecting said second alternate metallic layers; said body being adapted to be disposed such that said first side of said body is exposed to said first gas, and said second side of said body is exposed to said second gas. A fuel cell for converting chemical energy released by reaction between a first gas and a second gas into electrical energy, said first and second gases being maintained in separate relationship, comprising: a plurality of layers of an electrolytic ceramic material; a plurality of layers of porous metallic conductor; each of said layers of porous metallic conductor being interposed between and contained by two of said layers of ceramic material so as to form a solid body of alternating ceramic and metallic layers, said body having first and second opposing sides; first alternate ones of said layers of porous metallic conductor being exposed along said first side of said body; second alternate ones of said layers of porous metallic conductor being exposed along said second side of said body; a first electrode connecting said first alternate metallic layers; and a second electrode connecting said second alternate metallic layers; said body being adapted to be disposed such that said first side of said body is exposed to said first gas, and said second side of said body is exposed to said second gas.
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