In situ generation of active species "NO" for the aerobic oxidative deprotection of aldoximes catalyzed by FeCl sub(3)/TEMPO

A simple and efficient aerobic oxidative deoximation system, using molecular oxygen as the green oxidant and FeCl sub(3)/TEMPO as the catalyst, is developed for a wide range of aldoximes. Notably, nitric oxide (NO), an active species for aerobic oxidation reactions, is assumed to be generated in sit...

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Veröffentlicht in:RSC advances 2013-10, Vol.3 (45), p.22918-22921
Hauptverfasser: Zhang, Guofu, Wen, Xin, Wang, Yong, Han, Xingwang, Luan, Yuxin, Zheng, Lebin, Ding, Chengrong, Cao, Xiaoji
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Sprache:eng
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Zusammenfassung:A simple and efficient aerobic oxidative deoximation system, using molecular oxygen as the green oxidant and FeCl sub(3)/TEMPO as the catalyst, is developed for a wide range of aldoximes. Notably, nitric oxide (NO), an active species for aerobic oxidation reactions, is assumed to be generated in situfrom the cleavage of oximes and further confirmed by the existence of a large quantity of NO sub(3) super(-) by Ionic Chromatography (IC).
ISSN:2046-2069
DOI:10.1039/c3ra45205k