IP Library Granted Patent US 10,615,444
Granted Patent B2
US 10,615,444 · App. 15/785,968 · Granted Apr 7, 2020

Anode with high redox stability

Inventors: Michael Gasda (Mountain View, CA); Chockkalingam Karuppaiah (Cupertino, CA); Tad Armstrong (Burlingame, CA); Vijay Radhakrishnan (Mumbai, IN); Emad El Batawi (Sunnyvale, CA)
Assignee: BLOOM ENERGY CORPORATION
H01M8/2425H01M4/861H01M4/8642H01M4/8652H01M4/8657H01M4/8663H01M4/8885H01M4/9016H01M4/9066H01M8/2457H01M8/1253H01M2004/8684H01M2008/1293Y02E60/525Y02P70/56
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Quick Facts
Patent No.
US 10,615,444
App. No.
15/785,968
Granted
Apr 7, 2020
Kind
B2
Abstract

A solid oxide fuel cell (SOFC) includes a cathode electrode, a solid oxide electrolyte and an anode electrode containing a first portion having a cermet containing a nonzero volume percent of a nickel containing phase and a nonzero volume percent of a ceramic phase and a second portion having a cermet containing a nonzero volume percent of a nickel containing phase and a nonzero volume percent of a ceramic phase, such that the first portion is located between the electrolyte and the second portion. The SOFC is an electrolyte-supported SOFC and the first portion of the anode electrode contains a lower ratio of the nickel containing phase to the ceramic phase than the second portion of the anode electrode. The first portion of the anode electrode has a porosity of 5-30 volume percent and the second portion of the anode electrode has a porosity of 31-60 volume percent.

Claims (19)

1. A solid oxide fuel cell (SOFC), comprising:

a cathode electrode;

a solid oxide electrolyte; and

an anode electrode comprising a first portion comprising a cermet containing a nonzero volume percent of a nickel containing phase and a nonzero volume percent of a ceramic phase and a second portion comprising a cermet containing a nonzero volume percent of a nickel containing phase and a nonzero volume percent of a ceramic phase, such that the first portion is located between the electrolyte and the second portion; wherein:

the SOFC is an electrolyte-supported SOFC and the first portion of the anode electrode contains a lower ratio of the nickel containing phase to the ceramic phase than the second portion of the anode electrode;

the first portion of the anode electrode has a porosity of 5-30 volume percent; and

the second portion of the anode electrode has a porosity of 31-60 volume percent,

wherein the second portion of the anode electrode has a thickness of 16-40 microns;

wherein the ceramic phase in the first portion comprises a ceramic phase comprising doped ceria and the ceramic phase in the second portion comprises a ceramic phase comprising doped ceria;

wherein the ceramic phase in the first portion comprises samaria-doped ceria or gadolinia doped ceria and the ceramic phase in the second portion comprises samaria-doped ceria or gadolinia doped ceria;

the first portion contains between 5 and 50 weight percent of the nickel containing phase and between 50 and 95 weight percent of the doped ceria containing phase; and

the second portion contains between 60 and 90 weight percent of the nickel containing phase and between 10 and 40 weight percent of the doped ceria containing phase.

2. The SOFC of claim 1 , wherein the first portion of the anode electrode has a nickel phase content of 1-20 volume percent and the second portion of the anode electrode has a nickel phase content of 21-60 volume percent.

3. The SOFC of claim 1 , further comprising a nickel mesh wire current collector affixed to the second portion of the anode electrode.

4. The SOFC of claim 1 , wherein the second portion of the anode electrode has a thickness of 30 microns.

5. The SOFC of claim 1 , wherein the second portion of the anode electrode has a thickness of 16-20 microns.

6. The SOFC of claim 1 , wherein:

the first portion contains between 20 and 30 weight percent of the nickel containing phase and between 70 and 80 weight percent of the doped ceria containing phase; and

the second portion contains between 70 and 80 weight percent of the nickel containing phase and between 20 and 30 weight percent of the doped ceria containing phase.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 27, 2017
From: GASDA, MICHAEL; KARUPPAIAH, CHOCKKALINGAM; ARMSTRONG, TAD; RADHAKRISHNAN, VIJAY; EL BATAWI, EMAD
To: BLOOM ENERGY CORPORATION
Reel/Frame 044223/0672 →
Continuity (4)
Continuation In Part 14270686 · May 6, 2014
Division 11907204 · Oct 10, 2007
Provisional Application 60852396 · Oct 18, 2006
Related Publication 20180040909A1 · Feb 8, 2018