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Solvent controlled synthesis of new hematite superstructures with large coercive values

Authors
Chaudhari, Nitin KadubaKim, Hyoung ChanKim, Chul SungPark, JeungheeYu, Jong-Sung
Issue Date
2012
Publisher
ROYAL SOC CHEMISTRY
Keywords
Solvent controlled synthesis; new hematite superstructures; coercive values
Citation
CRYSTENGCOMM, v.14, no.6, pp.2024 - 2031
Indexed
SCIE
SCOPUS
Journal Title
CRYSTENGCOMM
Volume
14
Number
6
Start Page
2024
End Page
2031
URI
https://scholar.korea.ac.kr/handle/2021.sw.korea/109376
DOI
10.1039/c1ce06444d
ISSN
1466-8033
Abstract
Various morphologies of hematite (alpha-Fe2O3) superstructures such as grape, cube, dumbbell, and microsphere shapes have been reproducibly obtained by a caffeine-assisted environmentally benign one-step hydrothermal synthesis route in the presence of different solvents. The hematite superstructures are formed by self-assembled aggregation of smaller particles of a few nanometres. It is demonstrated that systematic control over the studied experimental conditions (caffeine, solvents, concentration, reaction time, etc.) efficiently alters the structural and magnetic properties of the iron oxide nanostructures. In particular, the solvent plays a key role for overall architecture of the oxide particles under different polar conditions. Magnetic hysteresis measurements reveal that the shape of nanostructures has a remarkable effect on the magnetic properties at room temperature. Interestingly, the coercive values are much higher at room temperature than those at lower temperature for the alpha-Fe2O3 superstructures prepared in this work.
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