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In Situ Formed Ir3Li Nanoparticles as Active Cathode Material in Li−Oxygen Batteries

Title
In Situ Formed Ir3Li Nanoparticles as Active Cathode Material in Li−Oxygen Batteries
Author
이윤정
Keywords
LITHIUM SUPEROXIDE; LI-O-2 BATTERIES; DISPROPORTIONATION; ELECTROLYTES; RELEVANCE; DIFFUSION; TRANSPORT; ION
Issue Date
2019-11
Publisher
AMER CHEMICAL SOC
Citation
JOURNAL OF PHYSICAL CHEMISTRY A, v. 123, no. 46, Page. 10047-10056
Abstract
Lithium-oxygen (Li-O-2) batteries are a promising class of rechargeable Li batteries with a potentially very high achievable energy density. One of the major challenges for Li-O-2 batteries is the high charge overpotential, which results in a low energy efficiency. In this work size-selected subnanometer Ir clusters are used to investigate cathode materials that can help control lithium superoxide formation during discharge, which has good electronic conductivity needed for low charge potentials. It is found that Ir particles can lead to lithium superoxide formation as the discharge product with Ir particle sizes of , similar to 1.5 nm giving the lowest charge potentials. During discharge these 1.5 nm Ir nanoparticles surprisingly evolve to larger ones while incorporating Li to form core-shell structures with Ir3Li shells, which probably act as templates for growth of lithium superoxide during discharge. Various characterization techniques including DEMS, Raman, titration, and HRTEM are used to characterize the LiO2 discharge product and the evolution of the Ir nanoparticles. Density functional calculations are used to provide insight into the mechanism for formation of the core-shell Ir Li-3 particles. The in situ formed Ir3Li core-shell nanoparticles discovered here provide a new direction for active cathode materials that can reduce charge overpotentials in Li-O-2 batteries.
URI
https://pubs.acs.org/doi/abs/10.1021/acs.jpca.9b06875https://repository.hanyang.ac.kr/handle/20.500.11754/154356
ISSN
1089-5639; 1520-5215
DOI
10.1021/acs.jpca.9b06875
Appears in Collections:
COLLEGE OF ENGINEERING[S](공과대학) > ENERGY ENGINEERING(에너지공학과) > Articles
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