Unified quantum theory of electrochemical kinetics by coupled ion-electron transfer; Computational insights into charge transfer kinetics at the LCO interface; Learning heterogeneous reaction kinetics from x-ray videos; 10.50x Analysis of Transport Phenomena (Award-winning 9 MOOCs); President, International Electrokinetics Society; Director, Center for Battery Sustainability; Director, D3BATT: Data-Driven Design of Rechargeable Batteries; MPET: Multiphase Porous Electrode Theory; EDIP: Environment Dependent Interatomic Potential.
Research Experience
D3BATT - Remaking Battery Science; Decoding the sounds of battery formation and degradation; Lithium-ion intercalation by coupled ion-electron transfer; Modeling single-crystal electrodes as a network of primary particles; Current-dependent morphologies of insulating electrodeposits in Li-O2 batteries, etc.
Background
Chevron Professor of Chemical Engineering, Digital Learning Officer, and Professor of Applied Mathematics at Massachusetts Institute of Technology. His research interests include battery science, electrochemical kinetics, etc.
Miscellany
Chief Scientist and Co-founder of Lithios, Inc.; Math Boot Camp for Engineers (MIT News)