Follow
Zigui Lu
Title
Cited by
Cited by
Year
Electrical conductivity of the manganese chromite spinel solid solution
Z Lu, J Zhu, E Andrew Payzant, MP Paranthaman
Journal of the American Ceramic Society 88 (4), 1050-1053, 2005
1442005
LaCrO3-based coatings on ferritic stainless steel for solid oxide fuel cell interconnect applications
JH Zhu, Y Zhang, A Basu, ZG Lu, M Paranthaman, DF Lee, EA Payzant
Surface and Coatings Technology 177, 65-72, 2004
1242004
Fabrication and testing of a doped lanthanum gallate electrolyte thin-film solid oxide fuel cell
JW Yan, ZG Lu, Y Jiang, YL Dong, CY Yu, WZ Li
Journal of the Electrochemical Society 149 (9), A1132, 2002
1062002
Lattice expansion of LSCF-6428 cathodes measured by in situ XRD during SOFC operation
JS Hardy, JW Templeton, DJ Edwards, Z Lu, JW Stevenson
Journal of power sources 198, 76-82, 2012
972012
Evaluation of Haynes 242 alloy as SOFC interconnect material
SJ Geng, JH Zhu, ZG Lu
Solid State Ionics 177 (5-6), 559-568, 2006
882006
Evaluation of several alloys for solid oxide fuel cell interconnect application
SJ Geng, JH Zhu, ZG Lu
Scripta Materialia 55 (3), 239-242, 2006
772006
SrZrO3 formation at the interlayer/electrolyte interface during (La1-xSrx) 1-δCo1-yFeyO3 cathode sintering
Z Lu, S Darvish, J Hardy, J Templeton, J Stevenson, Y Zhong
Journal of The Electrochemical Society 164 (10), F3097, 2017
632017
Nanostructured thin solid oxide fuel cells with high power density
A Ignatiev, X Chen, N Wu, Z Lu, L Smith
Dalton Trans., 5501-5506, 2008
632008
Enhanced performance of an anode-supported YSZ thin electrolyte fuel cell with a laser-deposited Sm0. 2Ce0. 8O1. 9 interlayer
Z Lu, X Zhou, D Fisher, J Templeton, J Stevenson, N Wu, A Ignatiev
Electrochemistry communications 12 (2), 179-182, 2010
582010
Electrical conductivity of epitaxial La0. 6Sr0. 4Co0. 2Fe0. 8O3− δ thin films grown by pulsed laser deposition
A Zomorrodian, H Salamati, Z Lu, X Chen, N Wu, A Ignatiev
international journal of hydrogen energy 35 (22), 12443-12448, 2010
502010
Comparison of Oxidation Behavior and Electrical Properties of Doped NiO- and Cr2O3-Forming Alloys for Solid-Oxide, Fuel-Cell Metallic Interconnects
MP Brady, BA Pint, ZG Lu, JH Zhu, CE Milliken, ED Kreidler, L Miller, ...
Oxidation of Metals 65, 237-261, 2006
482006
Development of Ni1-xCoxO as the cathode/interconnect contact for solid oxide fuel cells
Z Lu, G Xia, JD Templeton, X Li, Z Nie, Z Yang, JW Stevenson
Electrochemistry communications 13 (6), 642-645, 2011
472011
Electrochemical performance of mixed ionic–electronic conducting oxides as anodes for solid oxide fuel cell
S Wang, Y Jiang, Y Zhang, W Li, J Yan, Z Lu
Solid State Ionics 120 (1-4), 75-84, 1999
471999
Thermal evaporation of pure Ag in SOFC-relevant environments
ZG Lu, JH Zhu
Electrochemical and Solid-State Letters 10 (10), B179, 2007
432007
Performance of anode-supported solid oxide fuel cell with thin bi-layer electrolyte by pulsed laser deposition
Z Lu, J Hardy, J Templeton, J Stevenson, D Fisher, N Wu, A Ignatiev
Journal of Power Sources 210, 292-296, 2012
422012
Evaluation of Binary Fe–Ni Alloys as Intermediate-Temperature SOFC Interconnect
JH Zhu, SJ Geng, ZG Lu, WD Porter
Journal of the Electrochemical Society 154 (12), B1288-B1294, 2007
412007
A Co–Fe alloy as alternative anode for solid oxide fuel cell
ZG Lu, JH Zhu, ZH Bi, XC Lu
Journal of power sources 180 (1), 172-175, 2008
402008
New insights in the polarization resistance of anode-supported solid oxide fuel cells with La0. 6Sr0. 4Co0. 2Fe0. 8O3 cathodes
Z Lu, J Hardy, J Templeton, J Stevenson
Journal of Power Sources 196 (1), 39-45, 2011
352011
Extended reaction zone of La0. 6Sr0. 4Co0. 2Fe0. 8O3 cathode for solid oxide fuel cell
Z Lu, J Hardy, J Templeton, J Stevenson
Journal of Power Sources 198, 90-94, 2012
342012
Electrochemical Performance and Stability of the Cathode for Solid Oxide Fuel Cells: III. Role of Volatile Boron Species on LSM/YSZ and LSCF
XD Zhou, JW Templeton, Z Zhu, YS Chou, GD Maupin, Z Lu, RK Brow, ...
Journal of the Electrochemical Society 157 (7), B1019, 2010
332010
The system can't perform the operation now. Try again later.
Articles 1–20