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Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different groups -Solvents -Rotation

Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

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Page 1: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

Chemical shift

- Inductive effects in alkanes-Anisotropy-Inductive effects in alkenes-δ values for different groups-13C chemical shift in different groups-Solvents-Rotation

Page 2: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

Inductive effects in alkanes

Page 3: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

Inductive effect and chemical shift

Page 4: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

δ-values: Hybridization effects

δ values: sp3 < sp2 < sp

Carbons with sp2 hybridization hold the electrons closer to the nucelus than do sp3 carbons. This leadsto less shielding of the attached protons. Thus vinyl hydrogens have higher chemical shifts than alifatic hydrogens

Acetylenic protons (sp-hybridized C) would be expected to have a higher chemical shift than vinyl protons.

This is not true due to magnetic anistropy

Page 5: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

Magnetic anisotropy

A magnetic field with non-uniform density or non-sperical distribution

The presence of π-electrons in a magnetic field sets up a small, localcurrent and an anisotropic magnetic field in its close proximity

Applies only to atoms with sp2 and sp hybridization

Page 6: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different
Page 7: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different
Page 8: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different
Page 9: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different
Page 10: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

Inductive effects i alkenes

Page 11: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

Alkynes

Page 12: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

Chemical shift overview

Page 13: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different
Page 14: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

Alkaner: δ-values

Page 15: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different
Page 16: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different
Page 17: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

Alkener: δ values

Page 18: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different
Page 19: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

Benzene derivatives: δ values

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Page 21: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

13C-Carbonyl chemical shift

Page 22: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

13C-cyclic compounds

Page 23: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

13C-Arenes

Page 24: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

Cyclic alkenes

Page 25: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

N-H and O-H chemical shift

δ: very dependent on solvent and concentration

R-O-H: 0,5 < δ < 4,5

R-N-H: 1,0 < δ < 5,0

Carboxylic acids (usually dimeric): 10 < δ 12

Enols: 12 < 18

In deuterated protic solvents: N-H, O-H and S-H can rapidly exchangeD with solvent and the 1H-NMR signal disappears.

Page 26: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

Solvents

Non polar solvents: Small effect on chemical shift

Polart + benzene : significant effect on chemical shift

Page 27: Chemical shift - Inductive effects in alkanes -Anisotropy -Inductive effects in alkenes -δ values for different groups -13C chemical shift in different

Slow rotation