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Modelling and Experimental Validation of Improved Performance of Lithium-Ion Batteries Having Thick Electrodes with Laser-Ablated Micro-Structures
Nathan Dunlap
,
Dana Sulas-Kern
,
Francois Usseglio-Viretta
,
Peter Weddle
,
Nathaniel Sunderlin
,
Donal Finegan
,
Bertrand Tremolet de Villers
Materials Science
Center for Energy Conversion and Storage Systems
National Renewable Energy Laboratory
Research output
:
NLR
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Dive into the research topics of 'Modelling and Experimental Validation of Improved Performance of Lithium-Ion Batteries Having Thick Electrodes with Laser-Ablated Micro-Structures'. Together they form a unique fingerprint.
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Engineering
Lithium-Ion Batteries
100%
Microstructure
100%
Flux Density
100%
Limitations
50%
Active Material
50%
Concentration Gradient
50%
Microchannel
50%
Pulsed Laser Ablation
50%
Model Prediction
50%
Micropore
50%
Laser Patterning
50%
Planers
50%
Manufacturing Cost
50%
Electric Vehicle
50%
Capacity Utilization
50%
Energy dispersive spectrometry
50%
Material Science
Lithium Ion Battery
100%
Lithium Ion
100%
Energy Density
100%
Laser Ablation
100%
Microstructure
100%
Scanning Electron Microscopy
50%
X-Ray Diffraction
50%
Energy-Dispersive X-Ray Spectroscopy
50%
Materials Characterization Technique
50%