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Confinement Effects of Hollow Structured Pt–Rh Electrocatalysts toward Complete Ethanol Electrooxidation

Confinement Effects of Hollow Structured Pt–Rh Electrocatalysts toward Complete Ethanol Electrooxidation

by Doug Foley | Jul 11, 2023 | Publications

K.-H. Kim, G. M. Hobold, K. J. Steinberg, and B. M. GallantConfinement Effects of Hollow Structured Pt–Rh Electrocatalysts toward Complete Ethanol ElectrooxidationACS Nano, 2023, DOI: 10.1021/acsnano.3c05334[publisher link] Abstract In the anodic ethanol oxidation...
Beneficial vs. Inhibiting Passivation by the Native Lithium Solid Electrolyte Interphase Revealed by Electrochemical Li+ Exchange

Beneficial vs. Inhibiting Passivation by the Native Lithium Solid Electrolyte Interphase Revealed by Electrochemical Li+ Exchange

by Doug Foley | Apr 6, 2023 | Publications

G. M. Hobold, K.-H. Kim, and B. M. GallantBeneficial vs. Inhibiting Passivation by the Native Lithium Solid Electrolyte Interphase Revealed by Electrochemical Li+ ExchangeEnergy & Environmental Science, 2023, 10.1039/D2EE04203G[publisher link] Abstract Despite...
Elucidating Concentration-Dependent Energy Limitations in Li Primary Battery Fluoro-organosulfur Catholytes

Elucidating Concentration-Dependent Energy Limitations in Li Primary Battery Fluoro-organosulfur Catholytes

by Doug Foley | Jan 24, 2023 | Publications

R. Sevilla, H. Gao, K. J. Steinberg, and B. M. GallantElucidating Concentration-Dependent Energy Limitations in Li Primary Battery Fluoro-organosulfur CatholytesJournal of Physical Chemistry C,  2023, DOI: 10.1021/acs.jpcc.2c07659[publisher link] Abstract Unlocking...
Fluoro-organosulfur catholytes to boost lithium primary battery energy

Fluoro-organosulfur catholytes to boost lithium primary battery energy

by Doug Foley | Nov 4, 2022 | Publications

H. Gao, A. R. Sevilla, G. M. Hobold, A. M. Melemed, R. Guo, S. C. Jones, and B. M. GallantProceedings of the National Academy of Sciences, 2022, 119, e2121440119★ Featured in MIT News and Popular Science[Publisher Link] Abstract Discovery of new electrochemical redox...
Quantifying Capacity Loss Mechanisms of Li Metal Anodes beyond Inactive Li°

Quantifying Capacity Loss Mechanisms of Li Metal Anodes beyond Inactive Li°

by Doug Foley | Sep 28, 2022 | Publications

G. M. Hobold and B. M. GallantACS Energy Letters, 2022, 7, 3458-3466[publisher link] Abstract Capacity losses in Li anodes derive from the formation of electronically isolated Li0 and parasitic reactions that form the solid electrolyte interphase (SEI). Loss...
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Recent Posts

  • High lithium oxide prevalence in the lithium solid–electrolyte interphase for high Coulombic efficiency
  • Impact of Differential Ca2+ Coordination in Borohydride-Based Electrolyte Blends on Calcium Electrochemistry and SEI Formation
  • Uncovering the Active Species in Amine-Mediated CO2 Reduction to CO on Ag
  • Dual Salt Cation-Swing Process for Electrochemical CO2 Separation
  • Cascade Defluorination of Perfluoroalkylated Catholytes Unlocks High Lithium Primary Battery Capacities

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