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Effects of a Hydroxyl Substituent on the Reactivity of the 2,4,6-Tridehydropyridinium Cation, an Aromatic σ,σ,σ-Triradical

✍ Scribed by Dr. Bartłomiej J. Jankiewicz; Dr. Nelson R. Vinueza; Dr. Jennifer N. Reece; Young C. Lee; Peggy Williams; Dr. John J. Nash; Prof. Hilkka I. Kenttämaa


Publisher
John Wiley and Sons
Year
2011
Tongue
English
Weight
221 KB
Volume
18
Category
Article
ISSN
0947-6539

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✦ Synopsis


Abstract

The reactivity of 3‐hydroxy‐2,4,6‐tridehydropyridinium cation was found to be drastically different from the reactivity of 2,4,6‐tridehydropyridinium cation. While the latter triradical reacts with tetrahydrofuran, dimethyl disulfide and ally iodide via three consecutive atom or group abstractions, the former triradical exhibits this behavior only with tetrahydrofuran. Only a single atom or group abstraction was observed for the 3‐hydroxy‐2,4,6‐tridehydropyridinium cation upon interaction with dimethyl disulfide and allyl iodide. This change in reactivity is caused by the hydroxyl group that strengthens the interactions between the two radical sites adjacent to it, thus reducing their reactivity. This explanation is supported by the observation of similar behavior for related biradicals.


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