Cynthia A. Rice

Affiliations: 
Chemical Engineering Tennessee Technological University 
Area:
Chemical Engineering, Alternative Energy, Sustainability
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"Cynthia Rice"
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Publications

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Pistono AO, Rice CA. (2020) Automotive Subzero Cold-Start Quasi-Adiabatic Proton Exchange Membrane Fuel Cell Fixture: Design and Validation. Molecules (Basel, Switzerland). 25
Mirshekari GR, Rice CA. (2018) Effects of support particle size and Pt content on catalytic activity and durability of Pt/TiO2 catalyst for oxygen reduction reaction in proton exchange membrane fuel cells environment Journal of Power Sources. 396: 606-614
Pistono A, Rice CA. (2017) The Effect of Material Properties on the Subzero Water Storage Capacity of Cathode Catalyst Layers for Proton Exchange Membrane Fuel Cells Journal of the Electrochemical Society. 164
Saeed S, Pistono A, Cisco J, et al. (2016) Advanced Selectively Gas Permeable Anode Flow Field Design for Removal of Carbon Dioxide in a Direct Formic Acid Fuel Cell Fuel Cells. 17: 48-55
Rice CA, Urchaga P, Pistono AO, et al. (2015) Platinum dissolution in fuel cell electrodes: Enhanced degradation from surface area assessment in automotive accelerated stress tests Journal of the Electrochemical Society. 162: F1175-F1180
Atkinson RW, St. John S, Dyck O, et al. (2015) Supportless, Bismuth-Modified Palladium Nanotubes with Improved Activity and Stability for Formic Acid Oxidation Acs Catalysis. 5: 5154-5163
Rinaldo SG, Urchaga P, Hu J, et al. (2014) Theoretical analysis of electrochemical surface-area loss in supported nanoparticle catalysts. Physical Chemistry Chemical Physics : Pccp. 16: 26876-86
Pistono AO, Burke CS, Cisco JW, et al. (2014) Inhibition of bismuth dissolution during anode catalyst layer pore former removal in a direct formic acid fuel cell Ecs Electrochemistry Letters. 3: F65-F67
Urchaga P, Kadyk T, Rinaldo SG, et al. (2014) Catalyst Degradation in Fuel Cell Electrodes: Accelerated Stress Tests and Model-based Analysis Electrochimica Acta
Rice CA, Betancourt D, Hepel M. (2014) Platinum Oxide Growth on Pt/C Fuel Cell Catalysts Using Asymmetric Scan Electrochemical Quartz Crystal Nanogravimetry Electrocatalysis. 6
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