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Publications by Thomas H. Etsell
High Performance Tubular Solid Oxide Fuel Cell Based on Ba 0.5 Sr 0.5 Ce 0.6 Zr 0.2 Gd 0.1 Y 0.1 O 3-Δ Proton Conducting Electrolyte
Journal of the Electrochemical Society
Surfaces
Condensed Matter Physics
Optical
Electrochemistry
Sustainability
Materials Chemistry
Magnetic Materials
Renewable Energy
Films
Coatings
Electronic
the Environment
Related publications
Comparison of Cu and Pt Point-Contact Electrodes on Proton Conducting BaZr 0.7 Ce 0.2 Y 0.1 O 3−δ
Solid State Ionics
Materials Science
Chemistry
Condensed Matter Physics
Field-Dependent Behavior of AC Susceptibility in [Y 0.8 Ca 0.2](Ba 0.5 Sr 0.5)2 Cu 3 O 7−δ
Journal of Superconductivity and Novel Magnetism
Optical
Electronic
Condensed Matter Physics
Magnetic Materials
Characterisation of Microstructure and Hardness of Perovskite-Structured Ba 0.5 Sr 0.5 Co 0.8 Fe 0.2 O 3−δ Under Different Sintering Conditions
Journal of the European Ceramic Society
Composites
Materials Chemistry
Ceramics
Synergic Effect of Cu/Ce 0.5 Pr 0.5 O 2-Δ and Ce 0.5 Pr 0.5 O 2-Δ in Soot Combustion
Applied Catalysis B: Environmental
Technology
Catalysis
Process Chemistry
Environmental Science
Tailoring Electrocatalytic Properties of Solid Oxide Fuel Cell Composite Cathodes Based on (La0.8Sr0.2)0.95MnO3+δand Doped Cerias Ce1-xLnxO2-Δ(Ln=Gd, La, Er, Pr, Tb and X=0.1-0.2)
Fuel Cells
Renewable Energy
Power Technology
the Environment
Sustainability
Energy Engineering
Bulk Transport and Oxygen Surface Exchange of the Mixed Ionic–electronic Conductor Ce1−xTbxO2−δ (X = 0.1, 0.2, 0.5)
Journal of Materials Chemistry A
Materials Science
Chemistry
the Environment
Sustainability
Renewable Energy
Synthesis and Magnetic Properties of Novel Ln[subscript 2-X]MxCuO[subscript 4+y] Compositions (Ln = La,Pr,Nd,Sm,Eu,Gd; M = Ca,Sr,Ba; 0<=x<=0.2; -0.5<=y<=0.5)
Variable-Temperature Measurements of the Dielectric Relaxation Spectroscopy in 0.1 SiO2-0.2 Cao-0.2 Na2O-0.5 P2O5 Bioactive Glass Materials
Bioceramics Development and Applications
Highly Stable Dual‐Phase Membrane Based on Ce 0.9 Gd 0.1 O 2– Δ —La 2 NiO 4+ Δ for Oxygen Permeation Under Pure CO 2 Atmosphere
Energy Technology
Energy