Is Electron Transfer a Step in the Nitration of Reactive Aromatics?
1Department of Chemistry, University of California─San Diego, La Jolla, California 92093-0358, United States.
None:
Controlled-potential electrolysis of a mixture of NO2 and naphthalene, at an applied potential capable of oxidizing naphthalene but not NO2, produces a mixture of nitronaphthalenes. The ratio of 1-nitronaphthalene to 2-nitronaphthalene is 10.2 ± 1, the same as the 10.9 ± 1 produced in the direct nitration of naphthalene with HNO3 + H2SO4. The observation that the same mixture is formed by the two routes is taken as evidence that a radical pair is involved not only in the electrochemical synthesis but also in the direct nitration. This requires that electron transfer from aromatic to NO2+ be sufficiently fast to compete with C-N bond formation. Moreover, formation of a radical pair is presented as the explanation for the high intramolecular selectivity of nitration, contrasting with a lack of intermolecular selectivity. This full paper presents the experimental details of a Communication to the Editor published in JACS in 1977, along with a review of experimental and computational assessments both in favor and in opposition to that Communication.
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