Enhancing the rate capability of highly densified Li-Ion battery cathodes by selective laser ablation
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SPIE
Reference18 articles.
1. Handbuch Lithium-Ionen-Batterien
2. Elektromobilität;Kampker,2013
3. Quantification of bottlenecks to fast charging of lithium-ion-insertion cells for electric vehicles
4. Influence of the particle size of electrode materials on intercalation rate and capacity of new electrodes
5. The effect of particle size and morphology on the rate capability of 4.7V LiMn1.5+δNi0.5−δO4 spinel lithium-ion battery cathodes
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1. Pulsed laser 3D-micro/nanostructuring of materials for electrochemical energy storage and conversion;Progress in Materials Science;2023-03
2. Enhancement of the wettability of graphite-based lithium-ion battery anodes by selective laser surface modification using low energy nanosecond pulses;The International Journal of Advanced Manufacturing Technology;2021-09-16
3. Thermophysical modeling of selective laser ablation processing of lithium-ion battery cathodes;Journal of Laser Applications;2020-11
4. Lithium Salt Dissociation in Diblock Copolymer Electrolyte Using Fourier Transform Infrared Spectroscopy;Frontiers in Energy Research;2020-09-24
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