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US20100326822A1 - Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator - Google Patents

Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator
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Publication number
US20100326822A1
US20100326822A1US12/876,069US87606910AUS2010326822A1US 20100326822 A1US20100326822 A1US 20100326822A1US 87606910 AUS87606910 AUS 87606910AUS 2010326822 A1US2010326822 A1US 2010326822A1
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United States
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layer
oxygen
platinum
cell
electrochemical
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Abandoned
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US12/876,069
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Ravi R. Chandran
Lisa Klein
Sandra Mege
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Individual
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Publication of US20100326822A1publicationCriticalpatent/US20100326822A1/en
Priority to US13/911,831prioritypatent/US20140209458A1/en
Priority to US15/018,573prioritypatent/US20170009355A1/en
Abandonedlegal-statusCriticalCurrent

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Abstract

An electrochemical cell that receives an inlet stream of air and produces an outlet stream of a high oxygen concentration of gas. The cell is made up of a plurality of layers and preferably a porous electrolyte comprised of yttria stabilized zirconia (YSZ) that allows only oxygen ions to pass therethrough and which is covered on its sides with electrodes comprised of lanthanum strontium manganate (LSM) which in turn are coated with a layer of platinum to aid in the even distribution of the electrical current. An electrical current is passed through the electrodes to produce a voltage difference therebetween. The layers of YSZ and LSM are formed by a sol-gel process.

Description

Claims (8)

1. An electrochemical oxygen cell for producing a gas having a high oxygen concentration, said electrochemical oxygen cell comprising a substrate, an anodic electrode layer of lanthanum strontium manganate covering said substrate, an electrolyte layer comprised of yttria stabilized zirconia covering said anodic electrode layer, and a cathodic electrode layer of lanthanum strontium manganate covering said electrolyte layer, said electrochemical cell having an inlet for air to enter said electrochemical oxygen cell through said cathodic electrode layer and an outlet for the high oxygen concentration gas to emerge from said electrochemical cell from said anodic electrode, said anodic electrode layer and said cathodic electrode layer adapted to be connected to a source of electrical energy to cause the flow of air through said electrochemical cell.
US12/876,0692000-05-192010-09-03Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generatorAbandonedUS20100326822A1 (en)

Priority Applications (3)

Application NumberPriority DateFiling DateTitle
US12/876,069US20100326822A1 (en)2000-05-192010-09-03Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator
US13/911,831US20140209458A1 (en)2000-05-192013-06-06Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator
US15/018,573US20170009355A1 (en)2000-05-192016-02-08Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator

Applications Claiming Priority (5)

Application NumberPriority DateFiling DateTitle
US20545800P2000-05-192000-05-19
US09/766,310US20020003085A1 (en)2000-05-192001-01-19Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator
US10/345,876US20030164311A1 (en)2000-05-192003-01-16Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator
US11/144,087US7790221B2 (en)2000-05-192005-06-03Sol-gel fabrication of thin-film electrolyte in an oxygen generator
US12/876,069US20100326822A1 (en)2000-05-192010-09-03Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator

Related Parent Applications (1)

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US11/144,087DivisionUS7790221B2 (en)2000-05-192005-06-03Sol-gel fabrication of thin-film electrolyte in an oxygen generator

Related Child Applications (1)

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US13/911,831ContinuationUS20140209458A1 (en)2000-05-192013-06-06Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator

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US20100326822A1true US20100326822A1 (en)2010-12-30

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Family Applications (6)

Application NumberTitlePriority DateFiling Date
US09/766,310AbandonedUS20020003085A1 (en)2000-05-192001-01-19Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator
US10/345,876AbandonedUS20030164311A1 (en)2000-05-192003-01-16Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator
US11/144,087Expired - Fee RelatedUS7790221B2 (en)2000-05-192005-06-03Sol-gel fabrication of thin-film electrolyte in an oxygen generator
US12/876,069AbandonedUS20100326822A1 (en)2000-05-192010-09-03Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator
US13/911,831AbandonedUS20140209458A1 (en)2000-05-192013-06-06Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator
US15/018,573AbandonedUS20170009355A1 (en)2000-05-192016-02-08Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator

Family Applications Before (3)

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US09/766,310AbandonedUS20020003085A1 (en)2000-05-192001-01-19Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator
US10/345,876AbandonedUS20030164311A1 (en)2000-05-192003-01-16Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator
US11/144,087Expired - Fee RelatedUS7790221B2 (en)2000-05-192005-06-03Sol-gel fabrication of thin-film electrolyte in an oxygen generator

Family Applications After (2)

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US13/911,831AbandonedUS20140209458A1 (en)2000-05-192013-06-06Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator
US15/018,573AbandonedUS20170009355A1 (en)2000-05-192016-02-08Multilayer electrochemical cell technology using sol-gel processing applied to ceramic oxygen generator

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JP4876373B2 (en)*2004-04-232012-02-15トヨタ自動車株式会社 Cathode for fuel cell and method for producing the same
US20100116133A1 (en)*2008-11-102010-05-13Reed David MOxygen separation assembly and method
US8465630B2 (en)2008-11-102013-06-18Praxair Technology, Inc.Oxygen separation assembly and method
CN109946363A (en)*2019-04-022019-06-28吉林大学 A C2H2 sensor based on graded porous SnO2/Zn2SnO4 sensitive electrode and its preparation method
CN116190867A (en)*2022-12-142023-05-30哈尔滨工业大学Full-open type long-endurance spark battery and preparation method thereof

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* Cited by examiner, † Cited by third party
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US4885142A (en)*1985-10-281989-12-05California Institute Of TechnologyApparatus in the form of a disk for the separation of oxygen from other gases and/or for the pumping of oxygen and the method of removing the oxygen
US4668374A (en)*1986-07-071987-05-26General Motors CorporationGas sensor and method of fabricating same
US4879016A (en)*1986-07-251989-11-07Ceramatec, Inc.Electrolyte assembly for oxygen generating device and electrodes therefor
US4946710A (en)*1987-06-021990-08-07National Semiconductor CorporationMethod for preparing PLZT, PZT and PLT sol-gels and fabricating ferroelectric thin films
US4957673A (en)*1988-02-011990-09-18California Institute Of TechnologyMultilayer ceramic oxide solid electrolyte for fuel cells and electrolysis cells and method for fabrication thereof
US5057362A (en)*1988-02-011991-10-15California Institute Of TechnologyMultilayer ceramic oxide solid electrolyte for fuel cells and electrolysis cells
US5176967A (en)*1990-02-151993-01-05Ngk Insulators, Ltd.Solid oxide fuel cells
US5449479A (en)*1990-12-311995-09-12California Institute Of TechnologyMethod of producing ceramic distribution members for solid state electrolyte cells
US5186806A (en)*1990-12-311993-02-16California Institute Of TechnologyCeramic distribution members for solid state electrolyte cells and method of producing
US5441610A (en)*1992-02-281995-08-15Renlund; Gary M.Oxygen supply and removal method and apparatus
US5391393A (en)*1992-04-061995-02-21Motorola, Inc.Method for making a semiconductor device having an anhydrous ferroelectric thin-film in an oxygen-containing ambient
US5913117A (en)*1995-03-201999-06-15Samsung Electronics Co., Ltd.Method for manufacturing ferroelectric capacitor
US6013391A (en)*1995-06-022000-01-11Regents Of The University Of MinnesotaHigh capacity high rate materials
US5963417A (en)*1995-11-091999-10-05Wisconsin Alumni Research FoundationElectrochemical capacitor
US5984458A (en)*1995-12-201999-11-16Seiko Epson CorporationPiezoelectric thin-film element and ink-jet recording head using the same
US5879956A (en)*1995-12-271999-03-09Lg Semicon Co., Ltd.Method of forming a perovskite structure semiconductor capacitor
US6015522A (en)*1996-10-202000-01-18State Of Israel, Ministry Of Industry & Trade, National Physical Laboratory Of IsraelMethod for low-temperature preparation of electrodes from conducting refractory powder materials
US6025205A (en)*1997-01-072000-02-15Tong Yang Cement CorporationApparatus and methods of forming preferred orientation-controlled platinum films using nitrogen
US6054331A (en)*1997-01-152000-04-25Tong Yang Cement CorporationApparatus and methods of depositing a platinum film with anti-oxidizing function over a substrate
US6005182A (en)*1997-05-221999-12-21Ngk Insulators, Ltd.Thermoelectric conversion module and method of manufacturing the same
US6019803A (en)*1997-05-222000-02-01The Johns Hopkins UniversityMethod for making carbon/ceramic composite electrodes for charge storage units
US5922183A (en)*1997-06-231999-07-13Eic Laboratories, Inc.Metal oxide matrix biosensors
US5945084A (en)*1997-07-051999-08-31Ocellus, Inc.Low density open cell organic foams, low density open cell carbon foams, and methods for preparing same
US6022748A (en)*1997-08-292000-02-08Sandia Corporation - New Mexico Regents Of The University Of CaliforniaSol-gel matrices for direct colorimetric detection of analytes
US5925183A (en)*1997-09-011999-07-20Japan As Represented By Director General Of Agency Of Industrial Science And TechnologyMethod for producing layer-structured perovskite thin film of bismuth-based compounds having ferroelectric properties
US6077344A (en)*1997-09-022000-06-20Lockheed Martin Energy Research CorporationSol-gel deposition of buffer layers on biaxially textured metal substances
US6015917A (en)*1998-01-232000-01-18Advanced Technology Materials, Inc.Tantalum amide precursors for deposition of tantalum nitride on a substrate
US6075203A (en)*1998-05-182000-06-13E. I. Du Pont Nemours And CompanyPhotovoltaic cells
US6638654B2 (en)*1999-02-012003-10-28The Regents Of The University Of CaliforniaMEMS-based thin-film fuel cells
US6074791A (en)*1999-02-262000-06-13Xerox CorporationPhotoconductive imaging members
US20060177706A1 (en)*1999-11-162006-08-10Barnett Scott ADirect hydrocarbon fuel cells

Also Published As

Publication numberPublication date
US20140209458A1 (en)2014-07-31
US20030164311A1 (en)2003-09-04
US20170009355A1 (en)2017-01-12
US20020003085A1 (en)2002-01-10
US7790221B2 (en)2010-09-07
US20050258031A1 (en)2005-11-24

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