Computed
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Solid-oxide fuel cells
Electrodes
Other heat and thermomechanic...
Electrolytes
Cermets, ceramic and refracto...
Phase separation and segregat...
Composite materials
Ceramics in electrochemistry
Powder processing: powder met...
Applied electrochemistry
Surface and interface chemist...
Oxidation
Electrochemical methods
Electrodeposition and electro...
Methods of materials synthesi...
Porous materials; granular ma...
Self-diffusion and ionic cond...
Electrodeposition, electropla...
Surface structure, reactivity...
Electrolysis
1.
Javadekar Ashay; Jayakumar Abhimanyu; Gorte R. J.; Vohs J. M.; Buttrey D. J.
Energy Storage in Electrochemical Cells with Molten Sb Electrodes
2.
Characteristics of Molten Alloys as Anodes in Solid Oxide Fuel Cells
3.
Küngas Rainer; Vohs John M.; Gorte Raymond J.
Effect of the Ionic Conductivity of the Electrolyte in Composite SOFC Cathodes
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4.
Kim Ju-Sik; Wieder Noah L.; Abraham Ashley J.; Cargnello Matteo; Fornasiero Paolo; Gorte Raymond J.; Vohs John M.
Highly Active and Thermally Stable Core-Shell Catalysts for Solid Oxide Fuel Cells
5.
Bidrawn F.; Küngas R.; Vohs J. M.; Gorte R. J.
Modeling Impedance Response of SOFC Cathodes Prepared by Infiltration
6.
Kim Ju-Sik; Lee Shiwoo; Gorte Raymond J.; Vohs John M.
Substrate-Mediated Spreading and Phase Segregation at LSM-Zirconia Interfaces
7.
Bidrawn F.; Vohs J. M.; Gorte R. J.
Fabrication of LSM–YSZ Composite Electrodes by Electrodeposition
8.
Küngas R.; Bidrawn F.; Vohs J. M.; Gorte R. J.
Doped-Ceria Diffusion Barriers Prepared by Infiltration for Solid Oxide Fuel Cells
9.
Jayakumar A.; Lee S.; Hornés A.; Vohs J. M.; Gorte R. J.
A Comparison of Molten Sn and Bi for Solid Oxide Fuel Cell Anodes
10.
Woo Leta Y.; Glass Robert S.; Gorte Raymond J.; Orme Christine A.; Nelson A. J.
Dynamic Changes in LSM Nanoparticles on YSZ: A Model System for Non-Stationary SOFC Cathode Behavior
11.
Kim G.; Lee S.; Shin J. Y.; Corre G.; Irvine J. T. S.; Vohs J. M.; Gorte R. J.
Investigation of the Structural and Catalytic Requirements for High-Performance SOFC Anodes Formed by Infiltration of LSCM
12.
Lee Shiwoo; Kim Guntae; Vohs J. M.; Gorte R. J.
SOFC Anodes Based on Infiltration of La0.3Sr0.7TiO3
13.
Bidrawn F.; Kim G.; Corre G.; Irvine J. T. S.; Vohs J. M.; Gorte R. J.
Efficient Reduction of CO2 in a Solid Oxide Electrolyzer
14.
Bidrawn F.; Vohs J. M.; Lee S.; Gorte R. J.
The Effect of Ca, Sr, and Ba Doping on the Ionic Conductivity and Cathode Performance of LaFeO3
15.
Kim Guntae; Vohs John M.; Wang Wensheng; Gross Michael D.; Gorte Raymond J.
SOFC Anodes Based on LST–YSZ Composites and on ;Y0.04Ce0.48Zr0.48O2
16.
Kim G.; Corre G.; Irvine J. T. S.; Vohs J. M.; Gorte R. J.
Engineering Composite Oxide SOFC Anodes for Efficient Oxidation of Methane
17.
Woo Leta Y.; Martin L. Peter; Glass Robert S.; Wang Wensheng; Jung Sukwon; Gorte Raymond J.; Murray Erica P.; Novak Robert F.; Visser Jaco H.
Effect of Electrode Composition and Microstructure on Impedancemetric Nitric Oxide Sensors Based on YSZ Electrolyte
18.
Jung S.-W.; Vohs J. M.; Gorte R. J.
Preparation of SOFC Anodes by Electrodeposition
19.
Gross M. D.; Vohs J. M.; Gorte R. J.
An Examination of SOFC Anode Functional Layers Based on Ceria in YSZ
20.
Wang Wensheng; Gross Michael D.; Vohs John M.; Gorte Raymond J.
The Stability of LSF-YSZ Electrodes Prepared by Infiltration
21.
Woo Leta Y.; Martin L. Peter; Glass Robert S.; Gorte Raymond J.
Impedance Characterization of a Model Au/;Yttria-Stabilized Zirconia/;Au Electrochemical Cell in Varying Oxygen and NOx Concentrations
22.
A Strategy for Achieving High Performance with SOFC Ceramic Anodes
23.
Wang Wensheng; Huang Yingyi; Jung Sukwon; Vohs John M.; Gorte Raymond J.
A Comparison of LSM, LSF, and LSCo for Solid Oxide Electrolyzer Anodes
24.
Jung Sukwon; Gross Michael D.; Gorte Raymond J.; Vohs John M.
Electrodeposition of Cu into a Highly Porous Ni/;YSZ Cermet
25.
Gross Michael D.; Vohs John M.; Gorte Raymond J.
Enhanced Thermal Stability of Cu-Based SOFC Anodes by Electrodeposition of Cr
26.
Huang Yingyi; Vohs John M.; Gorte Raymond J.
An Examination of LSM-LSCo Mixtures for Use in SOFC Cathodes
27.
Huang Y.; Vohs J. M.; Gorte R. J.
SOFC Cathodes Prepared by Infiltration with Various LSM Precursors
28.
Ahn Kipyung; He Hongpeng; Vohs John M.; Gorte Raymond J.
Enhanced Thermal Stability of SOFC Anodes Made with CeO2-ZrO2 Solutions
29.
Characterization of LSM-YSZ Composites Prepared by Impregnation Methods
30.
He Hongpeng; Gorte Raymond J.; Vohs John M.
Highly Sulfur Tolerant Cu-Ceria Anodes for SOFCs
31.
Lee Shung-Ik; Ahn Kipyung; Vohs John M.; Gorte Raymond J.
Cu-Co Bimetallic Anodes for Direct Utilization of Methane in SOFCs
32.
Huang Yingyi; Ahn Kipyung; Vohs John M.; Gorte Raymond J.
Characterization of Sr-Doped LaCoO3-YSZ Composites Prepared by Impregnation Methods
33.
Lee Shung-Ik; Vohs John M.; Gorte Raymond J.
A Study of SOFC Anodes Based on Cu-Ni and Cu-Co Bimetallics in CeO2-YSZ
34.
McIntosh Steven; Adler Stuart B.; Vohs John M.; Gorte Raymond J.
Effect of Polarization on and Implications for Characterization of LSM-YSZ Composite Cathodes
35.
Fabrication of Sr-Doped LaFeO3 YSZ Composite Cathodes
36.
McIntosh Steven; He Hongpeng; Lee Shung-Ik; Costa-Nunes Olga; Krishnan Venkatesan V.; Vohs John M.; Gorte Raymond J.
An Examination of Carbonaceous Deposits in Direct-Utilization SOFC Anodes
37.
He Hongpeng; Vohs John M.; Gorte Raymond J.
Effect of Synthesis Conditions on the Performance of Cu-CeO2-YSZ Anodes in SOFCs
38.
McIntosh Steven; Vohs John M.; Gorte Raymond J.
Effect of Precious-Metal Dopants on SOFC Anodes for Direct Utilization of Hydrocarbons
39.
Lu C.; Worrell W. L.; Vohs J. M.; Gorte R. J.
A Comparison of Cu-Ceria-SDC and Au-Ceria-SDC Composites for SOFC Anodes
40.
McIntosh S.; Vohs J. M.; Gorte R. J.
Impedance Spectroscopy for the Characterization of Cu-Ceria-YSZ Anodes for SOFCs
41.
Costa-Nunes O.; Vohs J. M.; Gorte R. J.
A Study of Direct-Conversion SOFC with n-Butane at Higher Fuel Utilization
42.
Role of Hydrocarbon Deposits in the Enhanced Performance of Direct-Oxidation SOFCs
43.
Lu C.; Gorte R. J.; Worrell W. L.; Vohs J. M.
SOFCs for Direct Oxidation of Hydrocarbon Fuels with Samaria-Doped Ceria Electrolyte
44.
Kim H.; Vohs J. M.; Worrell W. L.; Lu C.; Gorte R. J.
Cu-Ni Cermet Anodes for Direct Oxidation of Methane in Solid-Oxide Fuel Cells
45.
Wang Conghua; Worrell Wayne L.; Park Seungdoo; Vohs John M.; Gorte Ray J.
Fabrication and Performance of Thin-Film YSZ Solid Oxide Fuel Cells
46.
Kim Hyuk; Vohs John M.; Park Seungdoo; Gorte Raymond J.
Direct Oxidation of Liquid Fuels in a Solid Oxide Fuel Cell
47.
Park Seungdoo; Gorte Raymond J.; Vohs John M.
Tape Cast Solid-Oxide Fuel Cells for the Direct Oxidation of Hydrocarbons
48.
Craciun R.; Park S.; Gorte R. J.; Vohs J. M.; Wang C.; Worrell W. L.
A Novel Method for Preparing Anode Cermets for Solid Oxide Fuel Cells
49.
Park Seungdoo; Craciun Radu; Vohs John M.; Gorte Raymond J.
Direct Oxidation of Hydrocarbons in a Solid Oxide Fuel Cell: I. Methane Oxidation
50.
Buck T. M.; Gorte R. J.; Rothman J. B.; Wheatley G. H.; Baragiola R. A.; Wallace W. E.; Tittensor J. G.
Differences in the neutralization of 2.4–10 keV Ne;+ scattered from the Cu and Au atoms of an alloy surface
51.
Roberts S.; Gorte R. J.
A comparison of Pt overlayers on α‐Al;2O3(0001), ZnO(0001)Zn, and ZnO(0001¯)O
46
Vohs, John M.
6
Huang, Yingyi
Gross, Michael D.
Lee, Shung-Ik
5
Park, Seungdoo
McIntosh, Steven
Kim, Guntae
Worrell, Wayne L.
4
He, Hongpeng
Wang, Wensheng
3
Lu, Cheng-Hsueh
Jung, Sukwon
Ahn, Kipyung
Woo, Leta Y.
Irvine, John T. S.