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Flame synthesis of 26-faceted maghemite polyhedrons grown via 14-faceted polyhedrons and their carbon composites for Li-ion battery application

Authors
Inamdar, ShaukataliChoi, Hyuck-SooKim, Min-SikChaudhari, KiranYu, Jong-Sung
Issue Date
2012
Publisher
ROYAL SOC CHEMISTRY
Keywords
Flame synthesis; maghemite; polyhedrons; carbon composites; Li-ion batter
Citation
CRYSTENGCOMM, v.14, no.20, pp.7009 - 7014
Indexed
SCIE
SCOPUS
Journal Title
CRYSTENGCOMM
Volume
14
Number
20
Start Page
7009
End Page
7014
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/109303
DOI
10.1039/c2ce26146d
ISSN
1466-8033
Abstract
26-faceted truncated cuboctahedrons of maghemite (gamma-Fe2O3) nanocrystals are grown via 14-faceted truncated octahedrons through simple and effective flame pyrolysis method by direct burning of ferrocene in different solvents in an alcohol lamp. Systematic investigations showed that the solvent plays an important role in the formation and development of the polyhedral maghemite nanocrystals. The maghemite polyhedral structures are characterized by XRD, TEM and HR-SEM analysis in detail and on the basis of these, the crystal growth mechanism is discussed. Some solvents generated maghemite-carbon composites by encapsulation of maghemite polyhedron by graphene-like layered carbon surrounded by amorphous carbon shell. The as-prepared maghemite-carbon composite showed superior storage performance when tested for Li-ion battery applications. Compared to pure maghemite, the carbon composite exhibited a stable discharge capacity of similar to 400 mA h g(-1) even after 50 cycles, while the discharge capacities of bare maghemite dropped to similar to 100 mA h g(-1) after 20 cycles.
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