Artigo Revisado por pares

Deuterium and 18 O isotope effects on 13 C chemical shifts of sterically hindered and/or intramolecularly hydrogen‐bonded o ‐hydroxy acyl aromatics

1994; Wiley; Volume: 32; Issue: 7 Linguagem: Inglês

10.1002/mrc.1260320705

ISSN

1097-458X

Autores

Poul Erik Hansen, Solveig Nygaard Ibsen, Tina Kristensen, Simon Bolvig,

Tópico(s)

Coordination Chemistry and Organometallics

Resumo

Abstract A series of sterically hindered o ‐hydroxy aromatic ketones were synthesized, including benzene, naphthalene, phenanthrene and pyrene derivatives. Deuterium isotope effects on the 13 C chemical shifts of 2‐hydroxy‐1‐acenaphthone and other sterically hindered, intramolcularly hydrogen‐bonded aromatic ketones (OH exchanged) are shown to be unusual. The two‐bond isotope effects are very large. Likewise are the istope effects on CO, C1, C3 and C4 carbon resonances and some show unusual signs. These unusual effects are explained by a higher degree of twist in the deuterio than the protio compound. Steric isotope effects are also observed on OH chemical shifts of sterically hindered o ‐hydroxy acetyl aromatic compounds deuteriated at the methyl group. These isotope effects show non‐additivity. For one‐bond isotope effects, 1 Δ 13 C( 18 O), hydrogen bonding leads to a decrease, whereas twisting of the carbonyl group leads to an increase. Two hydrogen bonds to the same acceptor has a reduced cumulative effect. Data for sterically hindered, hydrogen‐bonded compounds are found to fall outside the correlation between δ( 17 O) and 1 Δ 13 C( 18 O).

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