Gallant Energy and Carbon Conversion Lab
  • Home
  • About Us
  • Research
    • Rechargeable batteries
    • Primary batteries
    • CO2 mitigation
  • Publications
  • Openings
  • Contact
Select Page
High lithium oxide prevalence in the lithium solid–electrolyte interphase for high Coulombic efficiency

High lithium oxide prevalence in the lithium solid–electrolyte interphase for high Coulombic efficiency

by Doug Foley | Jun 17, 2024 | Publications

G.M. Hobold, C. Wang, K. J. Steinberg, Y. Li, and B. M. GallantNature Energy, 2024, 9, 580-591[publisher link] Abstract Current electrolyte design for Li metal anodes emphasizes fluorination as the pre-eminent guiding principle for high Coulombic efficiency (CE) based...
Impact of Differential Ca2+ Coordination in Borohydride-Based Electrolyte Blends on Calcium Electrochemistry and SEI Formation

Impact of Differential Ca2+ Coordination in Borohydride-Based Electrolyte Blends on Calcium Electrochemistry and SEI Formation

by Doug Foley | Oct 2, 2023 | Publications

A. M. Melemed, D. A. Skiba, K. J. Steinberg, K.-H. Kim, and B. M. GallantImpact of Differential Ca2+ Coordination in Borohydride-Based Electrolyte Blends on Calcium Electrochemistry and SEI FormationDOI: 10.1021/acs.jpcc.3c03800[publisher link] Abstract Despite...
Uncovering the Active Species in Amine-Mediated CO2 Reduction to CO on Ag

Uncovering the Active Species in Amine-Mediated CO2 Reduction to CO on Ag

by Doug Foley | Sep 8, 2023 | Publications

G. Leverick, E. M. Bernhardt, A. I. Ismail, J. H. Law, A. Arifutzzaman, M. K. Aroua, and B. M. GallantACS Catalysis 2023, 13, 12322–12337. Doi: 10.1021/acscatal.3c02500★ Featured in MIT News[publisher link] Abstract Electrochemical reactive capture of CO2, which...
Dual Salt Cation-Swing Process for Electrochemical CO2 Separation

Dual Salt Cation-Swing Process for Electrochemical CO2 Separation

by Doug Foley | Sep 6, 2023 | Publications

F.-Y. Kuo, S. E. Jerng, and B. M. GallantDual Salt Cation-Swing Process for Electrochemical CO2 SeparationACS Central Science 2023, DOI: 10.1021/acscentsci.3c00692[publisher link] Abstract Electrochemical CO2 separations, which use electricity rather than thermal...
Cascade Defluorination of Perfluoroalkylated Catholytes Unlocks High Lithium Primary Battery Capacities

Cascade Defluorination of Perfluoroalkylated Catholytes Unlocks High Lithium Primary Battery Capacities

by Doug Foley | Jul 21, 2023 | Publications

H. Gao, K. Yoshinaga, K. J. Steinberg, T. M. Swager, and B. M. GallantCascade Defluorination of Perfluoroalkylated Catholytes Unlocks High Lithium Primary Battery CapacitiesAdvanced Energy Materials, 2023, DOI: 10.1002/aenm.202301751[publisher link] Abstract Exceeding...
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...
« Older Entries

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

Recent Comments

    Archives

    • June 2024
    • October 2023
    • September 2023
    • July 2023
    • April 2023
    • January 2023
    • November 2022
    • September 2022
    • July 2022
    • May 2022
    • March 2022
    • January 2022

    Categories

    • how-to
    • Publications

    Meta

    • Log in
    • Entries feed
    • Comments feed
    • WordPress.org

    Gallant Energy and Carbon Conversion Lab

    77 Massachusetts Avenue, Building 3-315

    Cambridge, MA 02139

    © 2022 MIT

    Accessibility

    Google Scholar