Electrochemical performance ofMn(3)O(4)nanorodsby N-doped reduced graphene oxide using ultrasonic spray pyrolysis for lithium storage

Authors
Kim, In GyeomGhani, FaizanLee, Kwan-YoungPark, SehkyuKwak, SoonjongKim, Hyung-SeokNah, In WookLim, JongChoo
Issue Date
2020-11
Publisher
WILEY
Citation
INTERNATIONAL JOURNAL OF ENERGY RESEARCH, v.44, no.14, pp.11171 - 11184
Abstract
The crumpled N-doped reduced graphene oxide wrapped Mn(3)O(4)nanorods (Mn-NrGO) composite are synthesized via a combination of spray pyrolysis and a hydrothermal process for lithium ion batteries. The Mn(3)O(4)nanorods are uniformly dispersed in the conductive matrix of crumpled N-doped reduced graphene oxide, forming a uniform wrapped composite and stopping them from restacking, which synergistically enhanced the Li(+)ion conductivity. The well-defined Mn(3)O(4)nanorods, strong interaction between Mn(3)O(4)and NrGO, and highly graphitic properties of Mn-NrGO result in superior reversible capacity, long cycle life, and superior rate performance of approximately 1500 mAh/g at 0.1 C after 100 cycles and >660S mAh/g at 1.0 C after 500 cycles.
Keywords
OXYGEN REDUCTION REACTION; ANODE MATERIALS; ION BATTERY; EXCELLENT PERFORMANCE; MNO2 NANORODS; METAL-OXIDES; MN3O4; NANOPARTICLES; COMPOSITE; CARBON; OXYGEN REDUCTION REACTION; ANODE MATERIALS; ION BATTERY; EXCELLENT PERFORMANCE; MNO2 NANORODS; METAL-OXIDES; MN3O4; NANOPARTICLES; COMPOSITE; CARBON; anode; lithium ion batteries; manganese oxide (Mn3O4); nitrogen doped reduced graphene oxide (NrGO); spray pyrolysis
ISSN
0363-907X
URI
https://pubs.kist.re.kr/handle/201004/117937
DOI
10.1002/er.5686
Appears in Collections:
KIST Article > 2020
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