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Eric J. Dufek

Government of the United States of America - Energy Storage & Electric Transportation Department

SCHOLARLY PAPERS

6

DOWNLOADS

446

TOTAL CITATIONS

5

Scholarly Papers (6)

1.

Optimizing the Microstructure of Coal-Derived Hard Carbons for Enhanced Anode Performance in Sodium-Ion Batteries

Number of pages: 24 Posted: 04 Feb 2023
University of Wyoming, Colorado State University, Fort Collins, Government of the United States of America - Energy Storage & Electric Transportation Department, Colorado State University, Fort Collins and University of Wyoming
Downloads 122 (588,531)

Abstract:

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Coal, Hard carbons, Anode materials, Na-ion batteries, energy storage

2.

Calendar Life of Lithium Metal Batteries: Accelerated Aging and Failure Analysis

Number of pages: 26 Posted: 19 Sep 2023
Government of the United States of America - Energy Storage & Electric Transportation Department, Government of the United States of America - Idaho National Laboratory, Government of the United States of America - Energy Storage & Electric Transportation Department, Government of the United States of America - Idaho National Laboratory, Government of the United States of America - Idaho National Laboratory, Government of the United States of America - Idaho National Laboratory, Government of the United States of America - Energy Storage & Electric Transportation Department, Government of the United States of America - Idaho National Laboratory, Forschungszentrum Jülich GmbH, State University of New York (SUNY), Stony Brook, State University of New York (SUNY), Stony Brook, Brookhaven National Laboratory and Brookhaven National Laboratory
Downloads 114 (621,896)

Abstract:

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Lithium metal battery, calendar life, solid electrolyte interphase, accelerated aging

Battery State-of-Health Diagnostics During Fast Cycling Using Physics-Informed Deep-Learning

Number of pages: 29 Posted: 21 Jun 2023
National Renewable Energy Laboratory - Energy Conversion and Storage Systems Center, Government of the United States of America - Energy Storage & Electric Transportation Department, Government of the United States of America - Energy Storage & Electric Transportation Department, Government of the United States of America - Energy Storage & Electric Transportation Department, National Renewable Energy Laboratory - Energy Conversion and Storage Systems Center, National Renewable Energy Laboratory - Energy Conversion and Storage Systems Center, National Renewable Energy Laboratory - Energy Conversion and Storage Systems Center, Government of the United States of America - Energy Storage & Electric Transportation Department, Government of the United States of America - Energy Storage & Electric Transportation Department and Government of the United States of America - Energy Storage & Electric Transportation Department
Downloads 43 (1,170,161)

Abstract:

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Li-ion battery model, machine learning, synthetic data, in-situ diagnostics

Battery State-of-Health Diagnostics During Fast Cycling Using Physics-Informed Deep-Learning

Number of pages: 29 Posted: 30 Mar 2023
National Renewable Energy Laboratory - Energy Conversion and Storage Systems Center, Government of the United States of America - Energy Storage & Electric Transportation Department, Government of the United States of America - Energy Storage & Electric Transportation Department, Government of the United States of America - Energy Storage & Electric Transportation Department, National Renewable Energy Laboratory - Energy Conversion and Storage Systems Center, National Renewable Energy Laboratory - Energy Conversion and Storage Systems Center, National Renewable Energy Laboratory - Energy Conversion and Storage Systems Center, Government of the United States of America - Energy Storage & Electric Transportation Department, Government of the United States of America - Energy Storage & Electric Transportation Department and Government of the United States of America - Energy Storage & Electric Transportation Department
Downloads 42 (1,183,247)

Abstract:

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Li-ion battery model, machine learning, synthetic data, in-situ diagnostics

4.

Fast-Charging Lithium-Ion Batteries: Synergy of Carbon Nanotubes and Laser Ablation

Number of pages: 29 Posted: 16 Dec 2024
Government of the United States of America - Idaho National Laboratory, National Laboratory of the Rockies, Government of the United States of America - Argonne National Laboratory, Government of the United States of America - Idaho National Laboratory, National Renewable Energy Laboratory - Energy Conversion and Storage Systems Center, Government of the United States of America - Idaho National Laboratory, National Renewable Energy Laboratory, Government of the United States of America - Energy Storage & Electric Transportation Department, Government of the United States of America - Idaho National Laboratory, Government of the United States of America - Chemical Sciences and Engineering Division, Government of the United States of America - Energy Storage & Electric Transportation Department, National Renewable Energy Laboratory - Energy Conversion and Storage Systems Center, National Laboratory of the Rockies, National Renewable Energy Laboratory - Energy Conversion and Storage Systems Center, Government of the United States of America - Energy Storage & Electric Transportation Department, Government of the United States of America - Chemical Sciences and Engineering Division and Government of the United States of America - Argonne National Laboratory
Downloads 45 (1,121,190)
Citation 4

Abstract:

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Lithium plating, Fast-charging, Lithium-ion batteries, Laser ablation, Single-wall carbon nano tubes.

5.

Hard Carbon Derived from Powder River Basin Subbituminous Coal for Sodium-Ion Storage

Number of pages: 25 Posted: 07 Dec 2024
University of Wyoming, Colorado State University, Fort Collins, Iowa State University, Government of the United States of America - Energy Storage & Electric Transportation Department, Colorado State University, Fort Collins and University of Wyoming
Downloads 42 (1,157,785)

Abstract:

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Hard Carbon, Coal, Morphology, Electrochemical properties

6.

Simultaneous Neutron and X-Ray Tomography for ex-situ 3D Visualization of Graphite Anode Degradation in Extremely Fast-Charged Lithium-Ion Batteries

Number of pages: 31 Posted: 20 Jun 2022
Stanford University - Department of Chemical Engineering, National Institute of Standards and Technology, Stanford University - Stanford Synchrotron Radiation Lightsource, Stanford University - Stanford Synchrotron Radiation Lightsource, Stanford University - Stanford Synchrotron Radiation Lightsource, Government of the United States of America - Argonne National Laboratory, Government of the United States of America - Chemical Sciences and Engineering Division, Government of the United States of America - Argonne National Laboratory, Government of the United States of America - Chemical Sciences and Engineering Division, Government of the United States of America - Energy Storage & Electric Transportation Department, Government of the United States of America - Energy Storage & Electric Transportation Department, Stanford University - Stanford Synchrotron Radiation Lightsource, University of Paderborn - Department Chemie, University of Colorado at Boulder - Department of Chemical and Biological Engineering and Stanford University - Stanford Synchrotron Radiation Lightsource
Downloads 38 (1,209,354)
Citation 1

Abstract:

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Neutron imaging, X-ray imaging, tomography, extreme-fast charging, lithium-ion batteries.