Biomimetic synthesis of quinoxalines in water

…, SN Murthy, VP Reddy, KR Rao, YVD Nageswar

Index: Madhav; Narayana Murthy; Prakash Reddy; Rama Rao; Nageswar Tetrahedron Letters, 2009 , vol. 50, # 44 p. 6025 - 6028

Full Text: HTML

Citation Number: 84

Abstract

In comparison with broad spectrum utility of quinoxalines in many fields, their preparation methods are limited in number. However, these established procedures suffered from many drawbacks such as drastic reaction conditions, expensive reagents and complicated work-up. Therefore, there is a clear need for the development of generally applicable and environmentally benign mild methodology for the synthesis of quinoxaline derivatives. In continuation of ...

Related Articles:

Suzuki–Miyaura cross-coupling reaction of aryl and heteroaryl pinacol boronates for the synthesis of 2-substituted pyrimidines

[Asano, Shigehiro; Kamioka, Seiji; Isobe, Yoshiaki Tetrahedron, 2012 , vol. 68, # 1 p. 272 - 279]

Efficient one-pot synthesis of quinoxalines in the presence of zinc iodide as catalyst

[Sangshetti; Kokare; Shinde Russian Journal of Organic Chemistry, 2009 , vol. 45, # 7 p. 1116 - 1118]

A rapid synthesis of quinoxalines starting from ketones

[Padmavathy; Nagendrappa, Gopalpur; Geetha Tetrahedron Letters, 2011 , vol. 52, # 4 p. 544 - 547]

A cyclic vicinal bis (tetraketone) and structural investigations of formoins

[Peter, Matthias; Gleiter, Rolf; Rominger, Frank; Oeser, Thomas European Journal of Organic Chemistry, 2004 , # 15 p. 3212 - 3220]

A one-pot synthesis of cyclic pyrido [1, 2-a] quinoxaline phosphate, a new molecule of biological importance from a quinoxaline derivative of sugar

[Goswami, Shyamaprosad; Adak, Avijit Kumar Chemistry Letters, 2003 , vol. 32, # 8 p. 678 - 679]

More Articles...