Z, E-isomerization mechanism for N-arylthio-1,4-benzoquinonimines: DNMR and DFT investigations

Pirozhenko VV, Rozhenko AB, Avdeenko AP, Konovalova SA, Santalova AA (2008)
MAGNETIC RESONANCE IN CHEMISTRY 46(9): 811-817.

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Zeitschriftenaufsatz | Veröffentlicht | Englisch
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MAGNETIC RESONANCE IN CHEMISTRY
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9
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811-817
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Pirozhenko VV, Rozhenko AB, Avdeenko AP, Konovalova SA, Santalova AA. Z, E-isomerization mechanism for N-arylthio-1,4-benzoquinonimines: DNMR and DFT investigations. MAGNETIC RESONANCE IN CHEMISTRY. 2008;46(9):811-817.
Pirozhenko, V. V., Rozhenko, A. B., Avdeenko, A. P., Konovalova, S. A., & Santalova, A. A. (2008). Z, E-isomerization mechanism for N-arylthio-1,4-benzoquinonimines: DNMR and DFT investigations. MAGNETIC RESONANCE IN CHEMISTRY, 46(9), 811-817. doi:10.1002/mrc.2254
Pirozhenko, V. V., Rozhenko, A. B., Avdeenko, A. P., Konovalova, S. A., and Santalova, A. A. (2008). Z, E-isomerization mechanism for N-arylthio-1,4-benzoquinonimines: DNMR and DFT investigations. MAGNETIC RESONANCE IN CHEMISTRY 46, 811-817.
Pirozhenko, V.V., et al., 2008. Z, E-isomerization mechanism for N-arylthio-1,4-benzoquinonimines: DNMR and DFT investigations. MAGNETIC RESONANCE IN CHEMISTRY, 46(9), p 811-817.
V.V. Pirozhenko, et al., “Z, E-isomerization mechanism for N-arylthio-1,4-benzoquinonimines: DNMR and DFT investigations”, MAGNETIC RESONANCE IN CHEMISTRY, vol. 46, 2008, pp. 811-817.
Pirozhenko, V.V., Rozhenko, A.B., Avdeenko, A.P., Konovalova, S.A., Santalova, A.A.: Z, E-isomerization mechanism for N-arylthio-1,4-benzoquinonimines: DNMR and DFT investigations. MAGNETIC RESONANCE IN CHEMISTRY. 46, 811-817 (2008).
Pirozhenko, V. V., Rozhenko, A. B., Avdeenko, A. P., Konovalova, S. A., and Santalova, A. A. “Z, E-isomerization mechanism for N-arylthio-1,4-benzoquinonimines: DNMR and DFT investigations”. MAGNETIC RESONANCE IN CHEMISTRY 46.9 (2008): 811-817.

2 Zitationen in Europe PMC

Daten bereitgestellt von Europe PubMed Central.

A new fundamental type of conformational isomerism.
Canfield PJ, Blake IM, Cai ZL, Luck IJ, Krausz E, Kobayashi R, Reimers JR, Crossley MJ., Nat Chem 10(6), 2018
PMID: 29784991

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