Isaac B. Sprague, Ph.D.
Affiliations: | 2011 | Mechanical Engineering | Washington State University, Pullman, WA, United States |
Area:
Materials Science Engineering, Applied Mathematics, EnergyGoogle:
"Isaac Sprague"Parents
Sign in to add mentorPrashanta Dutta | grad student | 2011 | WSU | |
(Mathematical studies of the electric double layer in electrochemical cells with an emphasis on laminar flow fuel cells.) |
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Publications
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Sprague IB, Dutta P. (2013) Improved kinetics from ion advection through overlapping electric double layers in nano-porous electrodes Electrochimica Acta. 91: 20-29 |
Sprague IB, Dutta P. (2012) Depth averaged analytic solution for a laminar flow fuel cell with electric double layer effects Siam Journal On Applied Mathematics. 72: 1149-1168 |
Sprague IB, Dutta P. (2012) Flow through nanoporous electrodes in a microfluidic fuel cell Asme International Mechanical Engineering Congress and Exposition, Proceedings (Imece). 7: 857-860 |
Sprague IB, Dutta P. (2012) Performance improvement of micro-fuel cell by manipulating the charged diffuse layer Applied Physics Letters. 101 |
Sprague IB, Dutta P. (2011) Modeling of diffuse charge effects in a microfluidic based laminar flow fuel cell Numerical Heat Transfer; Part a: Applications. 59: 1-27 |
Sprague I, Dutta P. (2011) Role of the diffuse layer in acidic and alkaline fuel cells Electrochimica Acta. 56: 4518-4525 |
Sprague IB, Dutta P. (2011) The electrode-electrolyte interface in Acidic and Alkaline fuel cells Asme 2011 International Mechanical Engineering Congress and Exposition, Imece 2011. 4: 547-552 |
Sprague I, Dutta P, Ha S. (2010) Flow Rate Effect on Methanol Electro-oxidation in a Microfluidic Laminar Flow System Journal of New Materials For Electrochemical Systems. 13: 305-313 |
Sprague IB, Dutta P. (2010) A numerical model to simulate diffuse effects in microfluidic fuel cells Asme International Mechanical Engineering Congress and Exposition, Proceedings (Imece). 5: 909-916 |
Sprague IB, Byun D, Dutta P. (2010) Effects of reactant crossover and electrode dimensions on the performance of a microfluidic based laminar flow fuel cell Electrochimica Acta. 55: 8579-8589 |