We recently reported a preliminary account of our efforts to develop novel diarylamine radical-trapping antioxidants (Hanthorn, J. J. et al. J. Am. Chem. Soc. 2012, 134, 8306-8309) wherein we demonstrated that the incorporation of ring nitrogens into diphenylamines affords compounds which display a compromise between H-atom transfer reactivity to peroxyl radicals and stability to one-electron oxidation. Herein we provide the details of the synthetic efforts associated with that report, which have been substantially expanded to produce a library of substituted heterocyclic diarylamines that we have used to provide further insight into the structure-reactivity relationships of these compounds as antioxidants (see the accompanying paper, DOI: 10.1021/jo301012x). The diarylamines were prepared in short, modular sequences from 2-aminopyridine and 2-aminopyrimidine wherein aminations of intermediate pyri(mi)dyl bromides and then Pd-catalyzed cross-coupling reactions of the amines and precursor bromides were the key steps to yield the diarylamines. The cross-coupling reactions were found to proceed best with Pd(η 3-1-PhC 3H 4)(η 5-C 5H 5) as precatalyst, which gave higher yields than the conventional Pd source, Pd 2(dba) 3.

Preparation of Highly Reactive Pyridine- and Pyrimidine-Containing Diarylamine Antioxidants / J. J. Hanthorn; L. Valgimigli; D. A. Pratt. - In: JOURNAL OF ORGANIC CHEMISTRY. - ISSN 0022-3263. - STAMPA. - 77:(2012), pp. 6908-6916. [10.1021/jo301013c]

Preparation of Highly Reactive Pyridine- and Pyrimidine-Containing Diarylamine Antioxidants

VALGIMIGLI, LUCA;
2012

Abstract

We recently reported a preliminary account of our efforts to develop novel diarylamine radical-trapping antioxidants (Hanthorn, J. J. et al. J. Am. Chem. Soc. 2012, 134, 8306-8309) wherein we demonstrated that the incorporation of ring nitrogens into diphenylamines affords compounds which display a compromise between H-atom transfer reactivity to peroxyl radicals and stability to one-electron oxidation. Herein we provide the details of the synthetic efforts associated with that report, which have been substantially expanded to produce a library of substituted heterocyclic diarylamines that we have used to provide further insight into the structure-reactivity relationships of these compounds as antioxidants (see the accompanying paper, DOI: 10.1021/jo301012x). The diarylamines were prepared in short, modular sequences from 2-aminopyridine and 2-aminopyrimidine wherein aminations of intermediate pyri(mi)dyl bromides and then Pd-catalyzed cross-coupling reactions of the amines and precursor bromides were the key steps to yield the diarylamines. The cross-coupling reactions were found to proceed best with Pd(η 3-1-PhC 3H 4)(η 5-C 5H 5) as precatalyst, which gave higher yields than the conventional Pd source, Pd 2(dba) 3.
2012
Preparation of Highly Reactive Pyridine- and Pyrimidine-Containing Diarylamine Antioxidants / J. J. Hanthorn; L. Valgimigli; D. A. Pratt. - In: JOURNAL OF ORGANIC CHEMISTRY. - ISSN 0022-3263. - STAMPA. - 77:(2012), pp. 6908-6916. [10.1021/jo301013c]
J. J. Hanthorn; L. Valgimigli; D. A. Pratt
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11585/129531
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