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The influence of relativistic effects on nuclear magnetic resonance spin-spin coupling constant polarizabilities of H
2
O
2
, H
2
S
2
, H
2
Se
2
and H
2
Te
2
Gabriel I. Pagola, Martin A. B. Larsen, Marta B. Ferraro,
Stephan P. A. Sauer
Kemisk Institut
Kemisk Institut
6
Citationer (Scopus)
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2
O
2
, H
2
S
2
, H
2
Se
2
and H
2
Te
2
'. Sammen danner de et unikt fingeraftryk.
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Keyphrases
Hydrogen Peroxide
100%
Nuclear Magnetic Resonance
100%
Relativistic Effects
100%
Coupling Constant
100%
Polarizability
100%
Spin-spin Coupling Constants
100%
Non-relativistic
66%
Density Functional Theory
33%
Third-order Tensor
33%
One-component
33%
Response Theory
33%
Quadratic Response
33%
Exchange-correlation Functionals
33%
Chiral Discrimination
33%
Diselenide
33%
Pseudoscalar
33%
B3LYP
33%
NMR Spectroscopy
33%
Disulfide
33%
Chemistry
Hydrogen Peroxide
100%
Polarizability
100%
NMR Spectroscopy
100%
Dihydrogen
100%
Spin-Spin Coupling Constant
100%
Relativistic Calculation
33%
Disulfide
33%
Diselenide
33%
Density Functional Theory
33%
DFT-B3LYP Calculation
33%
Physics
Coupling Constant
100%
Nuclear Magnetic Resonance
100%
Relativistic Effect
100%
Spin-Spin Coupling
100%
Density Functional Theory
25%