Anil V. Virkar

Materials Science and Engineering University of Utah, Salt Lake City, UT 
Materials Science Engineering, Energy
"Anil Virkar"
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Zhang L, Zhu L, Virkar AV. (2016) Electronic conductivity measurement of yttria-stabilized zirconia solid electrolytes by a transient technique Journal of Power Sources. 302: 98-106
Virkar AV. (2016) Failure of Ion-Conducting Materials by Internal Precipitation Under Electrolytic Conditions Engineered Ceramics: Current Status and Future Prospects. 59-76
Zhu L, Zhang L, Virkar AV. (2015) Measurement of ionic and electronic conductivities of Yttria-stabilized zirconia by an embedded electrode method Journal of the Electrochemical Society. 162: F298-F309
Virkar AV. (2015) Reversible fuel cells with tri-layer electrolytes Ecs Transactions. 68: 3253-3260
Zhu L, Zhang L, Virkar AV. (2015) A parametric model for solid oxide fuel cells based on measurements made on cell materials and components Journal of Power Sources. 291: 138-155
Virkar AV, Tao G. (2015) Reversible high temperature cells for power generation and hydrogen production using mixed ionic electronic conducting solid electrolytes International Journal of Hydrogen Energy. 40: 5561-5577
Zhang L, Zhu L, Liu F, et al. (2014) Improved grain boundary conductivity by post annealing: Minimizing vacancy depletion through non-equilibrium distribution of immobile species Ecs Transactions. 61: 139-150
Ding H, Virkar AV, Liu M, et al. (2013) Suppression of Sr surface segregation in La(1-x)Sr(x)Co(1-y)Fe(y)O(3-δ): a first principles study. Physical Chemistry Chemical Physics : Pccp. 15: 489-96
Parthasarathy P, Virkar AV. (2013) Vapor phase conversion of ?-Alumina + Zirconia composites into sodium ion conducting Na-?-Alumina + Zirconia solid electrolytes Journal of the Electrochemical Society. 160
Zhang L, Liu F, Virkar AV. (2013) Electrochemical measurements on cells, I: Simulation of potential distribution with an embedded probe Ecs Transactions. 58: 79-91
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