Key points are not available for this paper at this time.
Rechargeable lithium metal batteries are considered the "Holy Grail" of energy storage systems. Unfortunately, uncontrollable dendritic lithium growth inherent in these batteries (upon repeated charge/discharge cycling) has prevented their practical application over the past 40 years. We show a novel mechanism that can fundamentally alter dendrite formation. At low concentrations, selected cations (such as cesium or rubidium ions) exhibit an effective reduction potential below the standard reduction potential of lithium ions. During lithium deposition, these additive cations form a positively charged electrostatic shield around the initial growth tip of the protuberances without reduction and deposition of the additives. This forces further deposition of lithium to adjacent regions of the anode and eliminates dendrite formation in lithium metal batteries. This strategy may also prevent dendrite growth in lithium-ion batteries as well as other metal batteries and transform the surface uniformity of coatings deposited in many general electrodeposition processes.
Building similarity graph...
Analyzing shared references across papers
Loading...
Fei Ding
Wu Xu
Gordon L. Graff
Journal of the American Chemical Society
University College London
Pacific Northwest National Laboratory
Tianjin Research Institute of Electric Science (China)
Building similarity graph...
Analyzing shared references across papers
Loading...
Ding et al. (Thu,) studied this question.
www.synapsesocial.com/papers/69d6c75975cae9790bed8b1b — DOI: https://doi.org/10.1021/ja312241y