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Electrochemical Zinc Intercalation in Lithium Vanadium Oxide: A High-Capacity Zinc-Ion Battery Cathode

Title
Electrochemical Zinc Intercalation in Lithium Vanadium Oxide: A High-Capacity Zinc-Ion Battery Cathode
Author
선양국
Keywords
PERFORMANCE; INSERTION; CRYSTAL; ELECTRODES; TRANSITION; CHALLENGES; LI1+XV3O8; CHEMISTRY; MECHANISM; BETA-MNO2
Issue Date
2017-02
Publisher
AMER CHEMICAL SOC
Citation
CHEMISTRY OF MATERIALS, v. 29, no. 4, page. 1684-1694
Abstract
Rechargeable zinc-ion batteries (ZIBs) with high energy densities appear promising to meet the increasing demand for safe and sustainable energy storage devices. 1.5 However, electrode research on this low-cost and green system are faced with stiff challenges of identifying materials that permit divalent ion-intercalation/deintercalation. Herein, we present layered-type LiV3O8 (LVO) as a prospective intercalation cathode for zinc-ion batteries (ZIBs) with high storage capacities. The detailed phase evolution study during Zn intercalation using electrochemistry, in situ XRD, and simulation techniques reveals the large presence of a single-phase domain that proceeds via a stoichiometric ZnLiV3O8 phase to reversible solid-solution ZnyLiV3O8 (y > 1) phase. The unique behavior, which is different from the reaction with lithium, contributes to high specific capacities of 172 mAh g(-1) and amounts to 75% retention of the maximum capacity achieved in 65 cycles with 100% Coulombic efficiency at a current density of 133 mA g(-1). The remarkable performance makes the development of this low-cost and safe battery technology very promising, and this study also offers opportunities to enhance the understanding on electrochemically induced metastable phases for energy storage applications.
URI
https://pubs.acs.org/doi/10.1021/acs.chemmater.6b05092https://repository.hanyang.ac.kr/handle/20.500.11754/112731
ISSN
0897-4756; 1520-5002
DOI
10.1021/acs.chemmater.6b05092
Appears in Collections:
COLLEGE OF ENGINEERING[S](공과대학) > ENERGY ENGINEERING(에너지공학과) > Articles
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