99845-76-8Relevant academic research and scientific papers
A new versatile synthesis of 4-substituted diaminopyridine derivatives
Banerjee, Sumela,Voit, Brigitte,Heinrich, Gert,B?hme, Frank
, p. 2236 - 2238 (2012)
A new convenient method for the synthesis of substituted 2,6-diacetamido pyridines has been developed. It starts from 4-hydroxypyridine and comprises the introduction of the amino groups by the Chichibabin reaction. After several protection and deprotection steps 2,6-diacetamido-4-hydroxy pyridine is obtained, which is regarded as a key compound for the synthesis of various substituted 2,6-diacetamido pyridines. It is shown that the free hydroxy group is susceptible for nucleophilic substitution. This provides an easy access to the introduction of different functional groups at 4-position of 2,6-diacetamido pyridine. The advantages over other procedures described in the literature are discussed.
2,6-Diamination of substituted pyridines via heterogeneous Chichibabin reaction
Mastalir, Matthias,Pittenauer, Ernst,Allmaier, Günter,Kirchner, Karl
supporting information, p. 333 - 336 (2016/01/12)
A series of ring substituted pyridines were selected for the sodium amide initiated heterogeneous Chichibabin amination to obtain 2,6-diaminopyridine derivatives which are important synthons for the preparation of PNP pincer ligands. The substrates were treated with an excess of sodium amide in neat mineral oil as solvent under an argon atmosphere. The reaction required temperatures of up to 215°C under vigorous stirring with an overall reaction time of 3-5 h. In the case of methyl, tert-butyl, phenyl, pyridinyl, and hydroxyl substituted pyridines the desired products were obtained in good to excellent yields (63-96%). Thus, the Chichibabin reaction provides an inexpensive and economic alternative to methodologies starting from halopyridines or pyridine N-oxides provided that the substituents are inert under the harsh reaction conditions.
