| Literature DB >> 32270534 |
Yulin Jie1, Yunshu Tan2, Linmei Li3, Yehu Han1, Shutao Xu4, Zhenchao Zhao4, Ruiguo Cao1, Xiaodi Ren1, Fanyang Huang1, Zhanwu Lei1, Guohua Tao2, Genqiang Zhang1, Shuhong Jiao1.
Abstract
Calcium-metal batteries (CMBs) provide a promising option for high-energy and cost-effective energy-storage technology beyond the current state-of-the-art lithium-ion batteries. Nevertheless, the development of room-temperature CMBs is significantly impeded by the poor reversibility and short lifespan of the calcium-metal anode. A solvation manipulation strategy is reported to improve the plating/stripping reversibility of calcium-metal anodes by enhancing the desolvation kinetics of calcium ions in the electrolyte. The introduction of lithium salt changes the electrolyte structure considerably by reducing coordination number of calcium ions in the first solvation shell. As a result, an unprecedented Coulombic efficiency of up to 99.1 % is achieved for galvanostatic plating/stripping of the calcium-metal anode, accompanied by a very stable long-term cycling performance over 200 cycles at room temperature. This work may open up new opportunities for development of practical CMBs.Entities:
Keywords: Coulombic efficiency; calcium plating; cycle life; solvation structure
Year: 2020 PMID: 32270534 DOI: 10.1002/anie.202002274
Source DB: PubMed Journal: Angew Chem Int Ed Engl ISSN: 1433-7851 Impact factor: 15.336