Thick Electrode Batteries: Principles, Opportunities, and Challenges
University of Maryland, College Park
Abstract
Abstract The ever‐growing portable electronics and electric vehicle markets heavily influence the technological revolution of lithium batteries (LBs) toward higher energy densities for longer standby times or driving range. Thick electrode designs can substantially improve the electrode active material loading by minimizing the inactive component ratio at the device level, providing a great platform for enhancing the overall energy density of LBs. However, extensive efforts are still needed to address the challenges that accompany the increase in electrode thickness, not limited to sluggish charge kinetics and electrode mechanical instability. In this review, the principles and the recent developments in the…
Citation impact
- FWCI
- 33.66
- Percentile
- 100%
- References
- 158
Authors
4Topics & keywords
- Materials science
- Electrode
- Battery (electricity)
- Electronics
- Nanotechnology
- Electrolyte
- Lithium (medication)
- Fabrication