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This review provides a bottom‐up evaluation of sodium‐ion battery safety, linking material degradation mechanisms, cell engineering parameters, and module/pack assembly. It emphasizes that understanding intrinsic material stability and establishing coordinated engineering control across hierarchical levels are vital for preventing degradation coupling ...
Won‐Gwang Lim +5 more
wiley +1 more source
Sulfide‐Based Electrolytes for All‐Solid‐State Sodium Batteries
This review covers the structural features and synthesis strategies of sulfide‐based solid electrolytes, as well as critical challenges related to conductivity, interfacial and moisture stability, and scaling‐up for practical application in Sodium‐based All Solid‐State Batteries.
Han Yang +6 more
wiley +1 more source
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Chemical Society Reviews, 2002
AbstractFor Abstract see ChemInform Abstract in Full Text.
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AbstractFor Abstract see ChemInform Abstract in Full Text.
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An Octane-Fueled Solid Oxide Fuel Cell
Science, 2005There are substantial barriers to the introduction of hydrogen fuel cells for transportation, including the high cost of fuel-cell systems, the current lack of a hydrogen infrastructure, and the relatively low fuel efficiency when using hydrogen produced from hydrocarbons.
Zhongliang, Zhan, Scott A, Barnett
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Catalysis in Solid Oxide Fuel Cells
Annual Review of Chemical and Biomolecular Engineering, 2011Solid oxide fuel cells (SOFCs) and solid oxide electrolyzers (SOEs) hold much promise as highly efficient devices for the direct interconversion of chemical and electrical energy. Commercial application of these devices, however, requires further improvements in their performance and stability.
R J, Gorte, J M, Vohs
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In Situ Studies of Fuel Oxidation in Solid Oxide Fuel Cells
Analytical Chemistry, 2007Existing electrochemical experiments and models of fuel oxidation postulate about the importance of different oxidation pathways and relative fuel conversion efficiencies, but specific information is often lacking. Experiments described below present the first direct, in situ measurements of relevant chemical species formed on solid oxide fuel cell ...
Michael B, Pomfret +2 more
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Biogas Fuel Reforming for Solid Oxide Fuel Cells
ECS Transactions, 2011In this paper, several strategies for biogas reforming and their ensuing effects on solid-oxide-fuel-cell performance are explored. Synthesized biogas (65% CH4 + 35% CO2) fuel streams are reformed over a rhodium catalyst supported on a porous alumina-foam support.
Danielle M. Murphy +4 more
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2012
The Solid Oxide Fuel Cell is an electrochemical device for the conversion of hydrogen or a hydrocarbon fuel directly into electrical power. They are clean, modular, and efficient and retain this efficiency across a wide range of sizes. This fuel flexibility and efficiency makes them very attractive for a number of power-generation roles, including ...
A. Atkinson, S. J. Skinner, J. A. Kilner
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The Solid Oxide Fuel Cell is an electrochemical device for the conversion of hydrogen or a hydrocarbon fuel directly into electrical power. They are clean, modular, and efficient and retain this efficiency across a wide range of sizes. This fuel flexibility and efficiency makes them very attractive for a number of power-generation roles, including ...
A. Atkinson, S. J. Skinner, J. A. Kilner
openaire +1 more source
Solid-State Electrochemistry and Solid Oxide Fuel Cells: Status and Future Prospects
Electrochemical Energy Reviews, 2022San Ping Jiang, Jiang san ping
exaly

