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Substituent effects by carbon-13 nuclear magnetic resonance: Concerning the π-inductive effect

W Adcock, M Aurangzeb, W Kitching, N Smith and D Doddrell
27(8) pp.1817 - 1821


10 articles found in Crossref database.

Progress in Physical Organic Chemistry (1976)
Topsom R. D.
Group IVb metalloidal substituent effects studied by carbon-13 nuclear magnetic resonance spectroscopy
Bullpitt Maxwell, Kitching William, Adcock William, Doddrell David
Journal of Organometallic Chemistry. 1976 116(2). p.161
Conformational consequences of metallo-methyl interactions: A 13C nuclear magnetic resonance study
Adcock W., Gupta B.D., Kitching W., Doddrell D.
Journal of Organometallic Chemistry. 1975 102(3). p.297
13C-NMR-Spektren von γ-substituierten pentamethincyanin-farbstoffen mit indolenin-endgruppen
Grahn W., Reichardt Ch.
Tetrahedron. 1976 32(1). p.125
Inhibition and enhancement of resonance as studied by 13C nuclear magnetic resonance spectroscopy
Kitching William, Jonge Ian De, Adcock William, Abeywickrema Anil N.
Organic Magnetic Resonance. 1980 14(6). p.502
Correlation Analysis in Chemistry (1978)
Ewing D. F.
ChemInform Abstract: SUBSTITUENT EFFECTS BY CARBON‐13 NUCLEAR MAGNETIC RESONANCE, CONCERNING THE PI‐INDUCTIVE EFFECT
ADCOCK W., AURANGZEB M., KITCHING W., SMITH N., DODDRELL D.
Chemischer Informationsdienst. 1974 5(52).
CRC Handbook of Basic Tables for Chemical Analysis, Second Edition (2003)
Metalloidalmethyl substituent effects by 13C and 19F NMR : electron release in the neutral ground state.
Adcock W., Cox D.P., Kitching W.
Journal of Organometallic Chemistry. 1977 133(3). p.393
13C NMR of polycyclic aromatic compounds. A review
Hansen Poul Erik
Organic Magnetic Resonance. 1979 12(3). p.109

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