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CAS: 371158-46-2
MF: C13H20N2O2
MW: 236.3101
Synonyms:

REPORT BY

Christopher Hulme

The University of Arizona
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Co-reporter: Zhigang Xu, Justin Dietrich, Arthur Y. Shaw, Christopher Hulme
pp: 4566-4569
Publication Date(Web):25 August 2010
DOI: 10.1016/j.tetlet.2010.06.116
Co-reporter: Fabio De Moliner, Christopher Hulme
pp: 5787-5790
Publication Date(Web):24 October 2012
DOI: 10.1016/j.tetlet.2012.08.072
A concise synthesis of two pharmacologically relevant classes of molecules possessing the imidazoquinoxaline core is reported. The protocol involves use of 1,2-phenylenediamines and glyoxylic acid derivatives, namely ethyl glyoxylate or benzylglyoxamide, along with tosylmethylisocyanides in a microwave-assisted Van Leusen three-component condensation. Subsequent unmasking (Boc removal) of an internal amino-nucleophile promotes deprotection and cyclization that take place either spontaneously in a one-pot fashion to give 8 or upon acidic treatment under microwave irradiation after isolation of the imidazole intermediate to give 11. Of note, a tricyclic framework is hence assembled by means of a rapid and straightforward method with a high bond-forming efficiency.Image for unlabelled figure
Co-reporter: Guillermo Martinez-Ariza, Muhammad Ayaz, Christopher Hulme
pp: 6719-6721
Publication Date(Web):4 December 2013
DOI: 10.1016/j.tetlet.2013.09.113
A straightforward procedure for the preparation of N-quinoxaline-indoles is presented. A base-catalyzed one-pot addition of indoles to a preformed α-iminoketone proceeds on the N-1 indole and the subsequent adduct undergoes an acid-mediated deprotection of an internal amino nucleophile, intramolecular cyclization, and final oxidation generating N-1-quinoxaline-indoles in good yield.A novel route to N-1-quinoxaline-indoles is presented. Base-catalyzed addition of indole to preformed α-iminoketones proceeds at the N-1 indole position and the subsequent adduct undergoes an acid-mediated Boc-deprotection, cyclization, and oxidation generating N-1-quinoxaline-indoles in good yield in a succinct three steps.Image for unlabelled figure
Co-reporter: Muhammad Ayaz, Zhigang Xu, Christopher Hulme
pp: 3406-3409
Publication Date(Web):4 June 2014
DOI: 10.1016/j.tetlet.2014.04.013
This Letter reveals a unique, user-friendly, concise two-step, one-pot protocol for the synthesis of highly substituted quinoxalines. Conducting the Ugi reaction with appropriately functionalized classical Ugi reagents with subsequent acid treatment of the Ugi adduct affords collections of diversified quinoxalines in good to excellent yields. The methodology exploits what may be viewed as a ‘convertible carboxylic acid’, which in addition may be captured in an intramolecular sense to generate structurally complex 2-benzimidazolylquinoxalines in a mere two steps.Image for unlabelled figure

Jin Zhu

Chengdu Institute of Organic Chemistry
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David Knight

Cardiff University
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Gerald Richter

Cardiff University
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