Betar Gallant
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Betar Gallantchemistry Degrees
Chemistry
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#6993
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Chemical Engineering
#814
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#835
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Physical Chemistry
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#1003
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Betar Gallantengineering Degrees
Engineering
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#10314
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Materials Science
#550
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#559
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Applied Physics
#3329
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#3416
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Chemistry Engineering
Betar Gallant's Degrees
- PhD Chemical Engineering Stanford University
- Masters Chemical Engineering Stanford University
- Bachelors Chemical Engineering University of California, Berkeley
Why Is Betar Gallant Influential?
(Suggest an Edit or Addition)According to Wikipedia, Betar Maurkah Gallant is an American engineer who is an associate professor at Massachusetts Institute of Technology. Her research investigates the development of new materials for batteries. She worked with Barack Obama on an educational initiative to train young Americans in clean energy.
Betar Gallant's Published Works
Published Works
- High-power lithium batteries from functionalized carbon-nanotube electrodes. (2010) (965)
- Lithium–oxygen batteries: bridging mechanistic understanding and battery performance (2013) (771)
- All-carbon-nanofiber electrodes for high-energy rechargeable Li–O2 batteries (2011) (516)
- Influence of Li2O2 morphology on oxygen reduction and evolution kinetics in Li–O2 batteries (2013) (370)
- Chemical and Morphological Changes of Li–O2 Battery Electrodes upon Cycling (2012) (347)
- Nanostructured carbon-based electrodes: bridging the gap between thin-film lithium-ion batteries and electrochemical capacitors (2011) (337)
- Role of Oxygen Functional Groups in Carbon Nanotube/Graphene Freestanding Electrodes for High Performance Lithium Batteries (2013) (295)
- Mechanisms of Morphological Evolution of Li2O2 Particles during Electrochemical Growth. (2013) (262)
- In situ transmission electron microscopy observations of electrochemical oxidation of Li2O2. (2013) (205)
- The intrinsic behavior of lithium fluoride in solid electrolyte interphases on lithium (2019) (141)
- Rate-Dependent Morphology of Li2O2 Growth in Li-O2 Batteries. (2013) (139)
- Self-standing positive electrodes of oxidized few-walled carbon nanotubes for light-weight and high-power lithium batteries (2012) (119)
- Moving beyond 99.9% Coulombic efficiency for lithium anodes in liquid electrolytes (2021) (102)
- A Molten Salt Lithium-Oxygen Battery. (2016) (93)
- Operando decoding of chemical and thermal events in commercial Na(Li)-ion cells via optical sensors (2020) (85)
- Three-Dimensional Au Microlattices as Positive Electrodes for Li-O2 Batteries. (2015) (75)
- Tailoring the Discharge Reaction in Li-CO2 Batteries through Incorporation of CO2 Capture Chemistry (2018) (69)
- Synthesis of highly stable sub-8 nm TiO2 nanoparticles and their multilayer electrodes of TiO2/MWNT for electrochemical applications. (2013) (63)
- Li2O Solid Electrolyte Interphase: Probing Transport Properties at the Chemical Potential of Lithium (2020) (60)
- Bubble growth and departure modes on wettable/non-wettable porous foams in alkaline water splitting (2021) (46)
- Advances in the chemistry and applications of alkali-metal–gas batteries (2020) (40)
- Operando Gas Monitoring of Solid Electrolyte Interphase Reactions on Lithium (2020) (29)
- A High-Capacity Lithium–Gas Battery Based on Sulfur Fluoride Conversion (2018) (22)
- Rate-Dependent Morphology of Li 2 O 2 Growth in LiO 2 Batteries (2013) (21)
- Promoting Amine-Activated Electrochemical CO2 Conversion with Alkali Salts (2019) (20)
- Rechargeable-battery chemistry based on lithium oxide growth through nitrate anion redox (2019) (20)
- Current Understanding of Nonaqueous Electrolytes for Calcium-Based Batteries. (2020) (20)
- The Governing Role of Solvent on Discharge Activity in Lithium-CO2 Batteries. (2019) (18)
- Tailoring of interfacial mechanical shear strength by surface chemical modification of silicon microwires embedded in Nafion membranes. (2015) (17)
- A Molten Salt Lithium—Oxygen Battery. (2016) (13)
- Controlling Fluoride‐Forming Reactions for Improved Rate Capability in Lithium‐Perfluorinated Gas Conversion Batteries (2019) (12)
- Reactivity and Evolution of Ionic Phases in the Lithium Solid–Electrolyte Interphase (2021) (11)
- Can an Inorganic Coating Serve as Stable SEI for Aqueous Superconcentrated Electrolytes? (2021) (9)
- Electrochemical Signatures of Interface-Dominated Behavior in the Testing of Calcium Foil Anodes. (2020) (8)
- Electrochemical Conversion of Nitrogen Trifluoride as a Gas-to-Solid Cathode in Li Batteries. (2018) (8)
- Electrochemical Performance of Thin-Film Functionalized Carbon Nanotube Electrodes in Nonaqueous Cells (2014) (8)
- Unlocking Reversibility of LiOH-Based Li-Air Batteries (2020) (7)
- Electrochemical reduction of CO2 in the captured state using aqueous or nonaqueous amines (2022) (5)
- The ionic interphases of the lithium anode in solid state batteries (2022) (4)
- A Novel Solid Solution Mn1-xVxP Anode with Tunable Alloying/Insertion Hybrid Electrochemical Reaction for High Performance Lithium Ion Batteries (2021) (4)
- Effects of Temperature on Amine-Mediated CO2 Capture and Conversion in Li Cells (2020) (4)
- Life cycle assessment of CO2 conversion and storage in metal–CO2 electrochemical cells (2022) (3)
- Electrochemical carbon capture processes for mitigation of CO2 emissions. (2022) (3)
- Quantifying Capacity Loss Mechanisms of Li Metal Anodes beyond Inactive Li0 (2022) (2)
- Fluoro-organosulfur catholytes to boost lithium primary battery energy (2022) (2)
- Toggling Calcium Plating Activity and Reversibility through Modulation of Ca2+ Speciation in Borohydride-based Electrolytes. (2022) (2)
- The Kinetics and Product Characteristics of Oxygen Reduction and Evolution in LiO2 Batteries (2014) (2)
- Impact of LiF Particle Morphology on Overpotential and Structure of Li Metal Deposition (2022) (2)
- Electrochemical methods for carbon dioxide separations (2022) (2)
- Probing the Functionality of LiFSI Structural Derivatives as Additives for Li Metal Anodes (2022) (2)
- MICROFABRICATION OF ELECTROCHEMICAL CAPACITORS WITH VERTICALLY-ALIGNED CARBON NANOTUBE ELECTRODES (2009) (2)
- Fundamental understanding and materials design approaches for lithium-oxygen electrochemical energy storage (2013) (1)
- Operando decoding of chemical and thermal events in commercial Na(Li)-ion cells via optical sensors (2020) (1)
- Influence of electrode stress on proton exchange membrane fuel cell performance : experimental characterization and power optimization (2008) (1)
- Electrochemical Fluoridation of Manganese Oxide by Perfluorinated-Gas Conversion for Lithium-Ion Cathodes (2021) (1)
- Controlling the Growth of Inorganic Solid Electrolyte Interphases on Lithium (2018) (0)
- Beneficial vs. Inhibiting Passivation by the Native Lithium Solid Electrolyte Interphase Revealed by Electrochemical Li+ Exchange (2023) (0)
- Outstanding Reviewers for Energy & Environmental Science in 2020 (2020) (0)
- Reactivity and Evolution of Ionic Solid-Electrolyte-Interphases in Battery Electrolytes (2021) (0)
- Electrochemically-Driven Transition of Crystallization Morphologies in Li-O2 Batteries (2013) (0)
- Perfluoroalkylated Catholyte Harnessing Multiple Fluoride Bond Breaking for Lithium Primary Batteries (2022) (0)
- Interplay of Transport and Reversibility of Lithium Electrodeposition through the Solid Electrolyte Interphase (2021) (0)
- Beneficial Vs. Inhibiting Passivation By the Native Li SEI Revealed By Electrochemical Li+ Exchange (2022) (0)
- Layer-by-layer assembled carbon nanotube nanostructures for high-power and high-energy lithium storage (2010) (0)
- (Battery Division Early Career Award Address Sponsored by Neware Technology Limited) Interplay of Chemistry and Function at the Solid Electrolyte Interphase of Lithium and Calcium Metal Anodes (2021) (0)
- Design Guidelines for Sulfonyl/Sulfamoyl Fluoride Electrolyte Additives for Modulation of Lithium Anode Coulombic Efficiency (2022) (0)
- (Invited) Promises and Limitations of Fluoride in Next-Generation Batteries: From New Reactions to New Interfaces (2019) (0)
- Breaking down hidden barriers (2020) (0)
- Cathode Design for a Molten Salt Lithium-Oxygen Battery (2015) (0)
- Chemical Modification of Semiconductor Interfaces for Mechanically Robust Solar Fuel Generating Devices (2014) (0)
- Cover Feature: Current Understanding of Nonaqueous Electrolytes for Calcium‐Based Batteries (Batteries & Supercaps 7/2020) (2020) (0)
- Data for He, Gallant et al., PNAS 2019 (2019) (0)
- Editors' Choice—Lithium Primary Batteries Employing Multi-Electron Carbon-Fluorine Bond Cleavage in Perfluoroalkylated Reactants (2022) (0)
- (Invited) Electrochemical Nucleation and Growth of Lithium Fluoride at Lithium Battery Interfaces (2022) (0)
- Functionalized All-Carbon Electrodes for Nonaqueous Electrochemical Capacitors (2011) (0)
- Direct imaging of micrometer-thick interfaces in salt-salt aqueous biphasic systems. (2023) (0)
- (Invited) Multi-Electron Reduction of Perfluorinated Gases: The 8-Electron Sulfur Hexafluoride System As a Model Reaction (2017) (0)
- Targeted Re-Speciation of Ca2+ in Borohydride-Based Electrolytes (2022) (0)
- Rate-Dependent Morphology of Li[subscript 2]O[subscript 2] Growth in Li–O[subscript 2] Batteries (2013) (0)
- Breaking down hidden barriers (2020) (0)
- Elucidating Concentration-Dependent Energy Limitations in Li Primary Battery Fluoro-organosulfur Catholytes (2023) (0)
- Li Metal Interface/Interphase (2018) (0)
- Tailoring the Discharge Reaction in Li-CO[subscript 2] Batteries through Incorporation of CO[subscript 2] Capture Chemistry (2018) (0)
- Local Solvation Modulates Activity of Covalent C−F Bonds in Fluorinated Electrolyte Additives (2021) (0)
- Probing Interphase Reactions on Lithium with Operando Gas Chromatograph (2020) (0)
- Structure of Li2O2 Discharge Products on Free-Standing Aligned Carbon Nanotube Electrodes for Li-Air Batteries (2012) (0)
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