Jacob N. Davis
Boston University
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Publication
Featured researches published by Jacob N. Davis.
Journal of The Electrochemical Society | 2011
L. F. J. Piper; Andrew R.H. Preston; Sang Wan Cho; Alexander DeMasi; Bin Chen; J. Laverock; Kevin E. Smith; Lincoln Miara; Jacob N. Davis; Soumendra N. Basu; Uday B. Pal; Srikanth Gopalan; Laxmikant V. Saraf; Tiffany C. Kaspar; Anne Matsuura; Per-Anders Glans; Jianzhong Guo
The evolution of the Mn charge state, chemical composition, and electronic structure of La{sub 0.8}Sr{sub 0.2}MnO{sub 3} (LSMO) cathodes during the catalytic activation of solid oxide fuel cell (SOFC) has been studies using X-ray spectroscopy of as-processed, exposed, and activated dense thin LSMO films. Comparison of O K-edge and Mn L{sub 3,2}-edge X-ray absorption spectra from the different stages of LSMO cathodes revealed that the largest change after the activation occurred in the Mn charge state with little change in the oxygen environment. Core-level X-ray photoemission spectroscopy and Mn L{sub 3} resonant photoemission spectroscopy studies of exposed and as-processed LSMO determined that the SOFC environment (800 C ambient pressure of O{sub 2}) alone results in La deficiency (severest near the surface with Sr doping >0.55) and a stronger Mn{sup 4+} contribution, leading to the increased insulating character of the cathode prior to activation. Meanwhile, O K-edge X-ray absorption measurements support Sr/La enrichment nearer the surface, along with the formation of mixed Sr{sub x}Mn{sub y}O{sub z} and/or passive MnO{sub x} and SrO species.
MRS Proceedings | 2009
Lincoln Miara; L. F. J. Piper; Jacob N. Davis; Laxmikant V. Saraf; Tiffany C. Kaspar; Soumendra N. Basu; Kevin E. Smith; Uday B. Pal; Srikanth Gopalan
A system to grow heteroepitaxial thin-films of solid oxide fuel cell (SOFC) cathodes on single crystal substrates was developed. The cathode composition investigated was 20% strontium-doped lanthanum manganite (LSM) grown by pulsed laser deposition (PLD) on single crystal (111) yttria-stabilized zirconia (YSZ) substrates. By combining electrochemical impedance spectroscopy (EIS) with x-ray photoemission spectroscopy (XPS) and x-ray absorption spectroscopy XAS measurements, we conclude that electrically driven cation migration away from the two-phase gas-cathode interface results in improved electrochemical performance. Our results provide support to the premise that the removal of surface passivating phases containing Sr 2+ and Mn 2+ , which readily form at elevated temperatures even in O 2 atmospheric pressures, is responsible for the improved cathodic performance upon application of a bias.
ECS Transactions, 41(11):19-24 | 2012
Jacob N. Davis; Lincoln Miara; Laxmikant V. Saraf; Tiffany C. Kaspar; Srikanth Gopalan; Uday B. Pal; J. C. Woicik; Soumendra N. Basu; Karl F. Ludwig
Energy Technology 2014: Carbon Dioxide Management and Other Technologies | 2014
Jacob N. Davis; Yang Yu; Deniz Cetin; Karl F. Ludwig; Uday B. Pal; Srikanth Gopalan; Soumendra N. Basu
Journal of The Electrochemical Society | 2011
Lincoln Miara; Jacob N. Davis; Soumendra N. Basu; Uday B. Pal; Srikanth Gopalan
Journal of The Electrochemical Society | 2017
Jacob N. Davis; Karl F. Ludwig; Kevin E. Smith; J. C. Woicik; Srikanth Gopalan; Uday B. Pal; Soumendra N. Basu
Thin Solid Films | 2015
D. Newby; J. Kuyyalil; J. Laverock; Karl F. Ludwig; Yang Yu; Jacob N. Davis; Srikanth Gopalan; Uday B. Pal; Soumendra N. Basu; Kevin E. Smith
JOM | 2018
Jacob N. Davis; Uday B. Pal; Srikanth Gopalan; Karl F. Ludwig; Soumendra N. Basu
Meeting Abstracts | 2012
Jacob N. Davis; Laxmikant V. Saraf; Tiffany C. Kaspar; Srikanth Gopalan; Uday B. Pal; J. C. Woicik; Soumendra N. Basu; Karl F. Ludwig
Meeting Abstracts | 2011
Jacob N. Davis; Lincoln Miara; Laxmikant V. Saraf; Tiffany C. Kaspar; Srikanth Gopalan; Uday B. Pal; Karl F. Ludwig; Soumendra N. Basu