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Temperature-Dependent Regioselectivity of Nucleophilic Aromatic Photosubstitution. Evidence That Activation Energy Controls Reactivity
Irradiation
(λ > 330 nm) of 2-chloro-4-nitroanisole (<b>1</b>)
at 25 °C in aqueous NaOH forms three substitution
photoproducts: 2-methoxy-5-nitrophenol (<b>2</b>), 2-chloro-4-nitrophenol
(<b>3</b>), and 3-chloro-4-methoxyphenol (<b>4</b>), in
chemical yields of 69.2%, 14.3%, and 16.5%. The activation energies
for the elementary steps from the triplet state at 25 °C were
determined to be 1.8, 2.4, and 2.7 kcal/mol, respectively. The chemical
yields of each of the three products were determined for exhaustive
irradiations at 0, 35, and 70 °C. The variation with temperature
of the experimental yields is reproduced almost exactly by the yields
calculated with the Arrhenius equation. This indicates that activation
energy is the fundamental property related to regioselectivity in
nucleophilic aromatic photosubstitution of the S<sub>N</sub>2 Ar*
type. The many methods proposed for predicting regioselectivity in
reactions of this type have had limited success and have not been
related to activation energy