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Neutron diffraction study of mesoporous and bulk hematite, α-Fe
2
O
3
A. H. Hill
, F. Jiao
, P. G. Bruce
, A. Harrison
, W. Kockelmann
, C. Ritter
Department of Energy, Environmental & Chemical Engineering
Research output
:
Contribution to journal
›
Article
›
peer-review
173
Scopus citations
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Dive into the research topics of 'Neutron diffraction study of mesoporous and bulk hematite, α-Fe
2
O
3
'. Together they form a unique fingerprint.
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Keyphrases
Iron Oxide
100%
Mesoporous
100%
Neutron Diffraction Study
100%
Weak Ferromagnetism
42%
Mesoporous Materials
28%
Canting Angle
14%
Antiferromagnetism
14%
Magnetic Moment
14%
Fe3+
14%
Spin-flop Transition
14%
Antiferromagnetic Phase
14%
Variable Temperature
14%
Material Remains
14%
Hexagonal Cells
14%
Neutron Diffraction
14%
Morin Transition
14%
Magnetic Hysteresis Measurements
14%
Fe2C
14%
Mean Pore Diameter
14%
Chemistry
Neutron Diffraction
100%
Meso Porosity
100%
Mesoporous Material
100%
Antiferromagnetic
50%
Magnetic Moment
50%
Ferromagnetism
50%
Magnetic Hysteresis
50%
R3-C
50%
Material Science
Neutron Diffraction
100%
Hematite
100%
Mesoporous Material
33%
Ferromagnetism
16%