This report summarizes the results of a four-year project, entitled, ''Low-Cost Manufacturing Of Multilayer Ceramic Fuel Cells'', jointly funded by the U.S. Department of Energy, the State of Ohio, and by project participants. The project was led by NexTech Materials, Ltd., with subcontracting support provided by University of Missouri-Rolla, Michael A. Cobb & Co., Advanced Materials Technologies, Inc., Edison Materials Technology Center, Gas Technology Institute, Northwestern University, and The Ohio State University. Oak Ridge National Laboratory, though not formally a subcontractor on the program, supported the effort with separate DOE funding. The objective of the program was to develop advanced manufacturing technologies for making sol...
Solid oxide fuel cell (SOFC) systems are worldwide under development in the 1-1000 kW range where sh...
Monolithic solid oxide fuel cells (MSOFCS) represent a potential breakthrough in fuel cell technolog...
The successful commercialization of fuel cells will depend on the achievement of competitive system ...
This report summarizes the results of Phase I of a study entitled, Low-Cost Manufacturing Of Multila...
This report summarizes the results of Phase II of this program, 'Low-Cost Manufacturing Of Multilaye...
Technology Management, Inc has evaluated the practical fabrication advantages and potential economic...
Planar Solid Oxide Fuel Cell manufacturing can be considered in the pilot plant stage with efforts d...
Small SOFC (solid oxide fuel cell) and PEM (polymer electrolyte membrane) fuel cells systems have re...
It is well established that anodes for solid oxide fuel cells (SOFCs) can be manufactured by process...
Planar fuel cells typically consist of several functional layers stacked on top of each other. We ha...
A worldwide overview of processing technology of solid oxide fuel cell (SOFC) components is given an...
Metal-supported fuel cells (MSCs) offer a high cost advantage over pure ceramic solid oxide fuel cel...
McDermott Technology, Inc. (MTI) is attempting to develop high-performance, cost-competitive solid o...
Fuel cells directly convert chemical energy into electrical energy with the potential of very high-e...
Currently NASA is investigating the feasibility of hybrid-electric, solid oxide fuel cell power (SOF...
Solid oxide fuel cell (SOFC) systems are worldwide under development in the 1-1000 kW range where sh...
Monolithic solid oxide fuel cells (MSOFCS) represent a potential breakthrough in fuel cell technolog...
The successful commercialization of fuel cells will depend on the achievement of competitive system ...
This report summarizes the results of Phase I of a study entitled, Low-Cost Manufacturing Of Multila...
This report summarizes the results of Phase II of this program, 'Low-Cost Manufacturing Of Multilaye...
Technology Management, Inc has evaluated the practical fabrication advantages and potential economic...
Planar Solid Oxide Fuel Cell manufacturing can be considered in the pilot plant stage with efforts d...
Small SOFC (solid oxide fuel cell) and PEM (polymer electrolyte membrane) fuel cells systems have re...
It is well established that anodes for solid oxide fuel cells (SOFCs) can be manufactured by process...
Planar fuel cells typically consist of several functional layers stacked on top of each other. We ha...
A worldwide overview of processing technology of solid oxide fuel cell (SOFC) components is given an...
Metal-supported fuel cells (MSCs) offer a high cost advantage over pure ceramic solid oxide fuel cel...
McDermott Technology, Inc. (MTI) is attempting to develop high-performance, cost-competitive solid o...
Fuel cells directly convert chemical energy into electrical energy with the potential of very high-e...
Currently NASA is investigating the feasibility of hybrid-electric, solid oxide fuel cell power (SOF...
Solid oxide fuel cell (SOFC) systems are worldwide under development in the 1-1000 kW range where sh...
Monolithic solid oxide fuel cells (MSOFCS) represent a potential breakthrough in fuel cell technolog...
The successful commercialization of fuel cells will depend on the achievement of competitive system ...