skip to main content
OSTI.GOV title logo U.S. Department of Energy
Office of Scientific and Technical Information

Title: Method to fabricate high performance tubular solid oxide fuel cells

Patent ·
OSTI ID:1084195

In accordance with the present disclosure, a method for fabricating a solid oxide fuel cell is described. The method includes forming an asymmetric porous ceramic tube by using a phase inversion process. The method further includes forming an asymmetric porous ceramic layer on a surface of the asymmetric porous ceramic tube by using a phase inversion process. The tube is co-sintered to form a structure having a first porous layer, a second porous layer, and a dense layer positioned therebetween.

Research Organization:
DOESC (USDOE Office of Science (SC) (United States))
Sponsoring Organization:
USDOE
DOE Contract Number:
SC001061
Assignee:
University of South Carolina (Columbia, SC)
Patent Number(s):
8,465,797
Application Number:
13/008,081
OSTI ID:
1084195
Country of Publication:
United States
Language:
English

References (19)

Solid Oxide Fuel Cell with Improved Current Collection patent-application June 2007
Review of the micro-tubular solid oxide fuel cell journal September 2009
Syngas Production By Coelectrolysis of CO2/H2O: The Basis for a Renewable Energy Cycle journal June 2009
Electrolysis of carbon dioxide in Solid Oxide Electrolysis Cells journal August 2009
Superior gas separation performance of dual-layer hollow fiber membranes with an ultrathin dense-selective layer journal November 2008
Fuel cell materials and components☆☆☆The Golden Jubilee Issue—Selected topics in Materials Science and Engineering: Past, Present and Future, edited by S. Suresh. journal November 2003
Experimental analysis of micro-tubular solid oxide fuel cell fed by hydrogen journal February 2010
Sea Water Demineralization by Means of an Osmotic Membrane book January 1963
Impact of Anode Microstructure on Solid Oxide Fuel Cells journal August 2009
New Fabrication Technique for Series-Connected Stack With Micro Tubular SOFCs journal October 2009
La[sub 0.6]Sr[sub 0.4]Co[sub 0.2]Fe[sub 0.8]O[sub 3−δ] Current Collectors via Ag Infiltration for Microtubular Solid Oxide Fuel Cells with Intermediate Temperature Operation journal January 2009
Fabrication and characteristics of anode-supported flat-tube solid oxide fuel cell journal July 2003
Hydrogen and synthetic fuel production from renewable energy sources journal October 2007
Factors Governing Oxygen Reduction in Solid Oxide Fuel Cell Cathodes journal October 2004
Recent advances in Perovskite-type materials for solid oxide fuel cell cathodes journal March 2001
Concepts and design for scaling up high temperature water vapour electrolysis☆ journal January 1982
Fabrication and Characterization of Ce 0.8 Sm 0.2 O 1.9 Microtubular Dual-Structured Electrolyte Membranes for Application in Solid Oxide Fuel Cell Technology journal November 2009
Characterization of NiO–yttria stabilised zirconia (YSZ) hollow fibres for use as SOFC anodes journal July 2009
Performance and Durability of Solid Oxide Electrolysis Cells journal January 2006

Similar Records

Cost-Reducing Methods for Thin Film Solid Oxide Fuel Cells
Journal Article · Wed Aug 10 00:00:00 EDT 2005 · Materials Research Society Bulletin · OSTI ID:1084195

Advances in tubular solid oxide fuel cell technology
Technical Report · Tue Dec 31 00:00:00 EST 1996 · OSTI ID:1084195

Development of Low-Cost Manufacturing Processes for Planar, Multilayer Solid Oxide Fuel Cell Elements
Technical Report · Sun Sep 30 00:00:00 EDT 2001 · OSTI ID:1084195

Related Subjects