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Refinement of the Li
x
Cu
0.07
Ti
2.05
S
4
structure by powder neutron diffraction
Y. Saidi, I. Abrahams, P. G. Bruce
School of Engineering & Physical Sciences
Research output
:
Contribution to journal
›
Article
›
peer-review
9
Citations (Scopus)
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x
Cu
0.07
Ti
2.05
S
4
structure by powder neutron diffraction'. Together they form a unique fingerprint.
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neutron diffraction
100%
lithium
100%
titanium ions
100%
sulfur
50%
cubic lattices
50%
range
50%
titanium
50%
host
50%
space groups
50%
solid solutions
50%
spinels
50%
lithium ions
50%
cathodes
50%
copper ions
50%
Material Science
Powder Neutron Diffraction
100%
Titanium Ion
100%
Lithium
50%
Cathode
50%
Lithium Ion
50%
Copper Ion
50%
Titanium
50%
Lithium Battery
50%
Solid Solution
50%
Physics
Solid Solutions
100%
Powder Neutron Diffraction
100%
Spinel
100%
Lithium Battery
100%
Copper Ion
100%
Pharmacology, Toxicology and Pharmaceutical Science
Sulfur
100%
Cuprous Ion
100%
Lithium Ion
100%