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Park, Noejung
Computational Physics & Electronic Structure Lab.
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Exploring the correlation between MoS2 nanosheets and 3D graphene-based nanostructures for reversible lithium storage

Author(s)
Son, YoonkookLee, Jung-SooChoi, MinSon, YeongukPark, NoejungKo, MinseongJang, Ji-HyunPark, Minjoon
Issued Date
2018-11
DOI
10.1016/j.apsusc.2018.07.027
URI
https://scholarworks.unist.ac.kr/handle/201301/24424
Fulltext
https://www.sciencedirect.com/science/article/pii/S0169433218319019?via%3Dihub
Citation
APPLIED SURFACE SCIENCE, v.459, pp.98 - 104
Abstract
Graphene-based materials are an attractive lithium storage material for next-generation lithium-based batteries due to its high capacity, surface area and conductivity. However, one of the major problems for its broad application in batteries is a large irreversible capacity, and the poor cycle stability and low rate capability remain. Here, we report a MoS2-stabilized hierarchical three-dimensional graphene-based nanostructure, in which the MoS2 layer acts as a stabilizer as well as an active material. We show that the presence of MoS2 thin layer adjacent to the graphene surface can improve lithium storage capability by improving lithium ion diffusion property with fast Li-ion transport kinetic. On the basis of experimental and theoretical approaches, we ascribe the improved reversible lithium storage to the unusual reversible Li-MoS2 redox reaction and charge distribution on the graphene and MoS2 interlayers. These findings will provide a potential new direction in the design of electrode materials for advanced lithium storage technologies.
Publisher
ELSEVIER SCIENCE BV
ISSN
0169-4332
Keyword (Author)
GrapheneMoS2BatteryNanostructureLithium storage, anode
Keyword
PERFORMANCE ANODE MATERIALTOTAL-ENERGY CALCULATIONSION BATTERIESHIGH-CAPACITYELECTROCHEMICAL PROPERTIESFACILE SYNTHESISCARBONCOMPOSITESSHEETSHYBRID

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