个人简介
B.S. in Chemical Engineering, Bucknell University
M.S. in Chemical and Biomolecular Engineering, University of Pennsylvania
Ph.D. in Chemical and Biomolecular Engineering, University of Pennsylvania
Assistant Professor of Chemical Engineering, Bucknell University, 2007-2013
Associate Professor of Chemical Engineering, Bucknell University, 2013-2014
研究领域
The Gross lab studies solid state materials, particularly mixed metal oxides, for electrochemical energy conversion applications. The various facets of this research include synthesis, structural characterization, and measurement of transport properties. Second, the Gross lab develops multifunctional ceramic composites for solid oxide fuel cell electrodes, including: computer modeling to simulate nanostructured composite morphologies and prediction of the resulting electrode properties, experimental synthesis and fabrication of predicted optimal composite systems, and electrochemical performance testing of prototype devices. Finally, Gross studies activity-level, or situational, student motivation in STEM courses with the goal of directly applying motivation theory and empirical research findings to practical course design. Teaching areas include Inorganic Chemistry, Materials Chemistry, Chemistry and Physics of Solid State Materials, and Green Technologies.
近期论文
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N. Siegel, M. Gross, C. Ho, T. Phan, J. Yuan, ‘Physical Properties of Solid Particle Thermal Energy Storage Media for Concentrating Solar Power Applications’, Energy Procedia, 49, 1015 (2014).
M. J. Synodis, C. L. Porter, N. M. Vo, A. J. L. Reszka, M. D. Gross, R. C. Snyder, ‘A Model to Predict Percolation Threshold and Effective Conductivity of Infiltrated Electrodes for Solid Oxide Fuel Cells’, Journal of the Electrochemical Society, 160, F1216 (2013).
K. Senevirathne, C. S. Day, M. D. Gross, A. Lachgar, N. A. W. Holzwarth, ‘A New Crystalline LiPON Electrolyte: Synthesis, Properties, and Electronic Structure’, Solid State Ionics, 233, 95 (2013).
N. M. Vo and M. D. Gross, ‘The Effect of Vanadium Deficiency on the Stability of Pd and Pt Catalysts in Lanthanum Strontium Vanadate Solid Oxide Fuel Cell Anodes’, Journal of the Electrochemical Society, 159, B641 (2012).
B. H. Smith and M. D. Gross, ‘A Highly Conductive Oxide Anode for Solid Oxide Fuel Cells’, Electrochemical and Solid-State Letters, 14, B1 (2011).
B. H. Smith, W. C. Holler, M. D. Gross, ‘Electrical Properties and Redox Stability of Tantalum-doped Strontium Titanate for SOFC Anodes’, Solid State Ionics, 192, 383 (2011).