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Hydrogen-related molecular structures observed in
19
F-TDPAD studies in diamond
E. Sideras-Haddad
,
S. H. Connell
, J. P.F. Sellschop
, M. C. Stemmet
, K. Bharuth-Ram
University of the Witwatersrand
University of KwaZulu-Natal
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19
F-TDPAD studies in diamond'. Together they form a unique fingerprint.
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Material Science
Diamond
100%
Molecular Structure
100%
Hydrogen
100%
Natural Diamond
66%
Coupling Constant
33%
Synthetic Diamond
33%
Quadrupole Coupling
33%
Physics
Molecular Structure
100%
Hydrogen
100%
Nuclear Reaction
50%
Coupling Constant
50%
Quadrupole Coupling
50%
Electric Field
50%
Biochemistry, Genetics and Molecular Biology
Chemical Structure
100%
Electric Field
100%
Coupling Constant
100%
Quadrupole Coupling
100%
Chemistry
Molecular Structure
100%
Hydrogen
100%
Coupling Constant
50%
Electric Field Gradient
50%
Quadrupole Coupling
50%
Nuclear Reaction
50%
Earth and Planetary Sciences
Molecular Structure
100%
Hydrogen
100%
Quadrupole
50%
Electric Field
50%
Nuclear Reaction
50%
Keyphrases
Oriented Electric Fields
25%