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Mendeleev Communications, 2004, Volume 14, Issue 5, Pages 210–212
DOI: https://doi.org/10.1070/MC2004v014n05ABEH001895
(Mi mendc3880)
 

This article is cited in 27 scientific papers (total in 27 papers)

One-pot construction of dihydropyrimidinones in ionic liquids

S. S. Bahekara, S. A. Kotharkarb, D. B. Shindeb

a Department of Chemical Engineering, National Chung Cheng University, Taiwan
b Department of Chemical Technology, Dr. B.A. Marathwada University, Aurangabad, India
Abstract: The use of the ionic liquid [bmim]Cl·2AlCl3 for the preparation of dihydropyrimidinones is described.
Document Type: Article
Language: English


Citation: S. S. Bahekar, S. A. Kotharkar, D. B. Shinde, “One-pot construction of dihydropyrimidinones in ionic liquids”, Mendeleev Commun., 14:5 (2004), 210–212
Linking options:
  • https://www.mathnet.ru/eng/mendc3880
  • https://www.mathnet.ru/eng/mendc/v14/i5/p210
  • This publication is cited in the following 27 articles:
    1. Karthikeyan Parasuraman, Sakthinarayanan Jayaraman, Uthayanila Selvarasu, Venkatesan Kasi, Ramasamy ShanmugaPriya, “An effective, recyclable, bi-functionalized ionic liquid catalyzed solvent, metal, base free one-pot multicomponent reaction”, Monatsh Chem, 2025  crossref
    2. Ramesh Mokal, Gopinath Shirole, Vilas Vane, Suresh Jadhavar, “18-crown-6 complex cation ionic liquid as an efficient catalyst for the synthesis of 3,4-dihydropyrimidin-2(1H)-one under solvent free condition”, Res Chem Intermed, 2024  crossref
    3. Vivek Srivastava, “[BPy][OH] Immobilized Hydrotalcite Clay Catalytic System for 1,2-dihyd-roquinazolines Synthesis”, COCAT, 11:1 (2024), 33  crossref
    4. Bhushan B. Popatkar, Nitin A. Sasane, Gangadhar A. Meshram, “[EMIM]AlCl4‐ionic liquid catalyzed mechanochemically assisted synthesis of 3,4‐dihydropyrimidin‐2‐(1H)‐one and thione derivatives”, Journal of Heterocyclic Chem, 60:7 (2023), 1199  crossref
    5. B. Mohammadi, F. K. Behbahani, G. B. Marandi, B. Mirza, “Synthesis of 3,4-Dihydropyrimidin-2(1H)-ones, -thione, and -selones, Catalyzed by TiO2 Nanoparticles”, Russ J Org Chem, 58:9 (2022), 1319  crossref
    6. Elham Zarenezhad, Mojtaba Farjam, Aida Iraji, “Synthesis and biological activity of pyrimidines-containing hybrids: Focusing on pharmacological application”, Journal of Molecular Structure, 1230 (2021), 129833  crossref
    7. Maral Shekarchi, Farahnaz K. Behbahani, Maryam Shekarchi, “Green route for the synthesis of 3-substituted indoles using [bmim]HSO4 as non-halogenated ionic liquid”, Monatsh Chem, 152:6 (2021), 659  crossref
    8. C.E. Torres-Méndez, B. López-Mayorga, “Copper supported on acid-activated vermiculite as an efficient and recyclable catalyst for the Biginelli reaction: a green approach”, Clay miner., 55:4 (2020), 271  crossref
    9. Rodrigo Abonia, Kenneth K. Laali, Advances in Heterocyclic Chemistry, 128, 2019, 333  crossref
    10. Priya Ramasamy Shunmuga, Uma maheswari Govindhasamay, Deepa Manicam, Karthikeyan Parasuraman, “Imidazolium supported iron-chloroglycine complex, a good turnover recyclable catalyst for the solvent free synthesis of 3, 4-dihydropyrimidin-2(1H)-ones – promoted by ultrasound irradiation”, J. Mex. Chem. Soc., 62:3 (2019)  crossref
    11. Behzad Mohammadi, Farahnaz K. Behbahani, “Recent developments in the synthesis and applications of dihydropyrimidin-2(1H)-ones and thiones”, Mol Divers, 22:2 (2018), 405  crossref
    12. Y.L.N. Murthy, Abdul Rajack, Kanithi Yuvaraj, “Solvent free synthesis of 3,4-dihydropyrimidine-2-(1H)-ones/thiones catalyzed by N,O-bis(trimethylsilyl)acetamide and dicyclohexyl carbodimide”, Arabian Journal of Chemistry, 9 (2016), S1740  crossref
    13. Maliheh M. Hosseini, Eskandar Kolvari, Nadiya Koukabi, Maryam Ziyaei, Mohammad Ali Zolfigol, “Zirconia Sulfuric Acid: An Efficient Heterogeneous Catalyst for the One-Pot Synthesis of 3,4-Dihydropyrimidinones Under Solvent-Free Conditions”, Catal Lett, 146:6 (2016), 1040  crossref
    14. Vincent Escande, Laetitia Garoux, Claire Grison, Yann Thillier, Françoise Debart, Jean-Jacques Vasseur, Clothilde Boulanger, Claude Grison, “Ecological catalysis and phytoextraction: Symbiosis for future”, Applied Catalysis B: Environmental, 146 (2014), 279  crossref
    15. Anlian Zhu, Qianqian Li, Lingjun Li, Jianji Wang, “One-Pot Synthesis of 3,4-Dihydro-2(H)-Pyrimidinones Catalyzed by Reusable Acidic Choline-Based Ionic Liquids”, Catal Lett, 143:5 (2013), 463  crossref
    16. Şirin Gülten, “Magnesium Bromide and Magnesium Chloride Hexahydrate Catalyzed One‐Pot Synthesis of Dihydropyrimidines viaBiginelli Reaction under Solvent‐Free Conditions”, Journal of Heterocyclic Chem, 50:2 (2013), 391  crossref
    17. Jagir S. Sandhu, “Recent advances in ionic liquids: green unconventional solvents of this century: part I”, Green Chemistry Letters and Reviews, 4:4 (2011), 289  crossref
    18. Suresh D. Salim, Krishnacharya G. Akamanchi, “Sulfated tungstate: An alternative, eco-friendly catalyst for Biginelli reaction”, Catalysis Communications, 12:12 (2011), 1153  crossref
    19. M. Syamala, “Recent Progress in Three-Component Reactions. An Update”, Organic Preparations and Procedures International, 41:1 (2009), 1  crossref
    20. Maksim A. Kolosov, Valeriy D. Orlov, Dmitriy A. Beloborodov, Victor V. Dotsenko, “A chemical placebo: NaCl as an effective, cheapest, non-acidic and greener catalyst for Biginelli-type 3,4-dihydropyrimidin-2(1H)-ones (-thiones) synthesis”, Mol Divers, 13:1 (2009), 5  crossref
    Citing articles in Google Scholar: Russian citations, English citations
    Related articles in Google Scholar: Russian articles, English articles
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