Synthesis of Functionalized Pyridazin-3(2H)-ones via Bromine−Magnesium Exchange on Bromopyridazin-3(2H)-ones

Author:

Ryabtsova Oxana1,Verhelst Tom1,Baeten Mattijs1,Vande Velde Christophe M. L.2,Maes Bert U. W.1

Affiliation:

1. Organic Synthesis, Department of Chemistry, University of Antwerp, Groenenborgerlaan 171, B-2020 Antwerp, Belgium

2. Karel de Grote University College, Department of Applied Engineering, X-ray Crystallography Lab, Salesianenlaan 30, B-2660 Antwerp, Belgium

Publisher

American Chemical Society (ACS)

Subject

Organic Chemistry

Reference39 articles.

1. Recent Advances in the Chemistry of Pyridazines

2. bTapolcsányi, P.; Mátyus, P.InTargets in Heterocyclic Systems;Attanasi, O. A.; Spinelli, D., Eds.Societa Chimica Italiana:Rome, 2002, Vol.6, p369.

3. cHaider, N.; Holzer, W.InScience of Synthesis;Yamamoto, Y., Ed.Thieme:New York, 2004, Vol.16, p125.

4. dMaes, B. U. W.; Lemière, G. L. F.InComprehensive Heterocyclic Chemistry III;Katritzky, A. R.; Ramsden, C. A.; Scriven, E. F. V.; Taylor, R. J. K.; Aitken, A., Eds;Elsevier:New York, 2008, Vol.8, p1.

5. Pyridazines, 74. Synthesis of Novel 4,5-Disubstituted Pyridazines by Homolytic Substitution and Structure Determination of Unexpected Reaction Products

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