Microwave-assisted sequential three-component synthesis of pyrrolyl-substituted chromeno[2,3-c]isoquinolin-5-amines
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A. V. Varlamov | L. Voskressensky | A. A. Festa | Olga A. Storozhenko | E. A. Sorokina | Xiaoyi Yue | A. Varlamov | A. Festa
[1] M. Egorov,et al. Efficient Multicomponent Approach to the Medicinally Relevant 5-aryl-chromeno[2,3-b]pyridine Scaffold , 2020 .
[2] V. Tafeenko,et al. Unexpected cascade transformations in the reaction of aromatic aldehydes with the malononitrile dimer , 2019, Synthetic Communications.
[3] M. Egorov,et al. Multicomponent assembling of salicylaldehydes, kojic acid and malonic acid derivatives , 2019, Mendeleev Communications.
[4] Xiaoming Ma,et al. Consecutive multicomponent reactions for the synthesis of complex molecules. , 2019, Organic & biomolecular chemistry.
[5] M. Egorov,et al. Pot-, Atom- and Step-Economic (PASE) Multicomponent Approach to the 5-(Dialkylphosphonate)-Substituted 2,4-Diamino-5H -chromeno[2,3-b ]pyridine Scaffold , 2019, European Journal of Organic Chemistry.
[6] L. Reguera,et al. Multicomponent Reaction Toolbox for Peptide Macrocyclization and Stapling. , 2019, Chemical reviews.
[7] A. V. Varlamov,et al. Homophtalonitrile for Multicomponent Reactions: Syntheses and Optical Properties of o‐Cyanophenyl‐ or Indol‐3‐yl‐Substituted Chromeno[2,3‐c]isoquinolin‐5‐Amines , 2018, ChemistryOpen.
[8] T. Müller. Multi-component synthesis of fluorophores via catalytic generation of alkynoyl intermediates. , 2018, Drug discovery today. Technologies.
[9] A. Dömling,et al. Macrocycles: MCR synthesis and applications in drug discovery. , 2018, Drug discovery today. Technologies.
[10] Ilich A. Ibarra,et al. Synthesis of polyheterocycles via multicomponent reactions. , 2018, Organic & biomolecular chemistry.
[11] Kyle A. Grice,et al. Understanding the structure and reactivity of the C–S linkage in biologically active 5-arylthio-5H-chromenopyridines , 2018 .
[12] M. Egorov,et al. Synthesis, structural, spectroscopic and docking studies of new 5C-substituted 2,4-diamino-5H-chromeno[2,3-b]pyridine-3-carbonitriles , 2017 .
[13] A. V. Varlamov,et al. Sequential three-component reaction of homophthalonitrile, salicylaldehydes and nitromethane , 2017 .
[14] Snehlata Yadav,et al. A visible light-initiated, one-pot, multi-component synthesis of 2-amino-4-(5-hydroxy-3-methyl-1H-pyrazol-4-yl)-4H-chromene-3-carbonitrile derivatives under solvent- and catalyst-free conditions , 2017, Research on Chemical Intermediates.
[15] T. Müller,et al. Multicomponent Syntheses of Fluorophores Initiated by Metal Catalysis , 2016 .
[16] T. Müller,et al. Multicomponent syntheses of functional chromophores. , 2016, Chemical Society reviews.
[17] R. Orru,et al. Multicomponent reactions - opportunities for the pharmaceutical industry. , 2013, Drug discovery today. Technologies.
[18] Wei Wang,et al. Chemistry and biology of multicomponent reactions. , 2012, Chemical reviews.
[19] A. Chizhov,et al. Solvent-free cascade reaction: direct multicomponent assembling of 2-amino-4H-chromene scaffold from salicylaldehyde, malononitrile or cyanoacetate and nitroalkanes , 2010 .