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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 42, 2012 - Issue 21
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Original Articles

Efficient and Green Approaches for the Synthesis of 4H-Benzo[g]chromenes in Water, Under Neat Conditions, and Using Task-Specific Ionic Liquid

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Pages 3211-3219 | Received 22 Jan 2011, Published online: 17 Aug 2012

Keep up to date with the latest research on this topic with citation updates for this article.

Read on this site (2)

Shabalala Nhlanhla Gracious, Nagaraju Kerru, Suresh Maddila, Werner E. van Zyl & Sreekantha B. Jonnalagadda. (2020) Facile one-pot green synthesis of 2-amino-4H-benzo[g]chromenes in aqueous ethanol under ultrasound irradiation. Synthetic Communications 50:13, pages 1960-1971.
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Youssef Dgachi, Helène Martin, Alexandre Bonet, Mourad Chioua, Isabel Iriepa, Ignacio Moraleda, Fakher Chabchoub, José Marco-Contelles & Lhassane Ismaili. (2017) Synthesis and Biological Assessment of Racemic Benzochromenopyrimidinetriones as Promising Agents for Alzheimer'S Disease Therapy. Future Medicinal Chemistry 9:8, pages 715-721.
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Articles from other publishers (19)

Shruti Jain & Shubha Jain. (2024) ZnO–Co3O4 nanocomposite as efficient heterogeneous catalyst for the ultrasound-assisted facile multicomponent synthesis of benzo[g]chromene derivatives. Journal of Chemical Sciences 136:2.
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Emna Choura, Fares El Ghali, Paul J BernardJosé Marco‐Contelles, Sami Aifa, Lhassane Ismaili & Fakher Chabchoub. (2024) Synthesis and Biological Evaluation of New Benzochromenopyrimidines for the Therapy of Colon and Lung Cancer. ChemistrySelect 9:2.
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Shiva Ghorbani, Davood Habibi, Somayyeh Heydari & Hakimeh Ebrahimi Asl. (2023) A novel Schiff-based palladium-complex as a capable nanocatalyst for the green synthesis of hexahydroquinolines and benzochromenes. Catalysis Communications 181, pages 106721.
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Goutam Brahmachari. 2023. Biotechnology of Microbial Enzymes. Biotechnology of Microbial Enzymes 297 321 .
Emna Choura, Fares Elghali, Paul J. Bernard, Dhouha Msalbi, José Marco-Contelles, Sami Aifa, Lhassane Ismaili & Fakher Chabchoub. (2022) Benzochromenopyrimidines: Synthesis, Antiproliferative Activity against Colorectal Cancer and Physicochemical Properties. Molecules 27:22, pages 7878.
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Ankita Chaudhary, Garima Khanna & J.M. Khurana. 2021. Green Synthetic Approaches for Biologically Relevant Heterocycles. Green Synthetic Approaches for Biologically Relevant Heterocycles 383 419 .
Zahra Tashrifi, Mohammad Mohammadi-Khanaposhtani, Haleh Hamedifar, Bagher Larijani, Samira Ansari & Mohammad Mahdavi. (2019) Synthesis and pharmacological properties of polysubstituted 2-amino-4H-pyran-3-carbonitrile derivatives. Molecular Diversity 24:4, pages 1385-1431.
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Venkata Durga Nageswar Yadavalli & Jayathirtha Rao Vaidya. 2020. Nanotechnology-Based Industrial Applications of Ionic Liquids. Nanotechnology-Based Industrial Applications of Ionic Liquids 311 352 .
Javad Safaei-Ghomi, Nasrin Enayat-Mehri & Fahime Eshteghal. (2018) 4-(4′-Diamino-di-phenyl)-sulfone supported on hollow magnetic mesoporous Fe 3 O 4 @SiO 2 NPs: As a reusable and efficient catalyst for the synthesis of ethyl 2-amino-5,10-dihydro-5,10-dioxo-4-phenyl-4 H benzo[ g ]chromene-3-carboxylates. Journal of Saudi Chemical Society 22:4, pages 485-495.
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Muthuraja PerumalPrakash SengoduSethuraman VenkatesanRadhakrishnan SrinivasanManisankar Paramsivam. (2017) Environmentally Benign Copper Triflate‐Mediated Multicomponent One‐Pot Synthesis of Novel Benzo[g]chromenes Possess Potent Anticancer Activity. ChemistrySelect 2:18, pages 5068-5072.
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Mohammad Ali ZolfigolArdeshir KhazaeiSaied AlaieSaeed Baghery. (2017) Synthesis of tricyanomethanesulfonic acid as a novel nanostructured and recyclable solid acid: application at the synthesis of biological henna-based chromenes. Canadian Journal of Chemistry 95:5, pages 560-570.
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Goutam Brahmachari. 2017. Biotechnology of Microbial Enzymes. Biotechnology of Microbial Enzymes 325 346 .
Prasun Mukherjee & Asish R. Das. (2016) Diastereoselective Synthesis of Structurally and Stereochemically Diversified 2-Oxa-7-azabicyclo[4.1.0]hept-3-enyl Carboxylates and Their Potential Application toward the Synthesis of Functionalized Pyranooxazolone and Pyrrole Derivatives through Skeletal Transformations. The Journal of Organic Chemistry 81:13, pages 5513-5524.
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Mohamed Hilmy Elnagdi, Moustafa Sherief Moustafa, Saleh Mohammed Al-Mousawi, Ramadan Ahmed Mekheimer & Kamal Usef Sadek. (2015) Recent developments in utility of green multi-component reactions for the efficient synthesis of polysubstituted pyrans, thiopyrans, pyridines, and pyrazoles. Molecular Diversity 19:3, pages 625-651.
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Fengjuan Yang, Haoran Wang, Liyan Jiang, Hong Yue, Hong Zhang, Zhi Wang & Lei Wang. (2015) A green and one-pot synthesis of benzo[g]chromene derivatives through a multi-component reaction catalyzed by lipase. RSC Advances 5:7, pages 5213-5216.
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Bhuwan B. Mishra, Dhananjay Kumar, Anoop S. Singh, Rama P. Tripathi & Vinod K. Tiwari. 2015. Green Synthetic Approaches for Biologically Relevant Heterocycles. Green Synthetic Approaches for Biologically Relevant Heterocycles 437 493 .
Fahime Khorami & Hamid Reza Shaterian. (2014) Silica-bonded propylpiperazine-N-sulfamic acid as recyclable solid acid catalyst for preparation of 2-amino-3-cyano-4-aryl-5,10-dioxo- 5,10-dihydro-4H-benzo[g]chromenes and hydroxy-substituted naphthalene-1,4-dione derivatives. Chinese Journal of Catalysis 35:2, pages 242-246.
Crossref
Clementina M.M. Santos & Artur M.S. Silva. 2013. 409 453 .
Jitender M. Khurana, Devanshi Magoo & Ankita Chaudhary. (2013) ChemInform Abstract: Efficient and Green Approaches for the Synthesis of 4H‐Benzo[g]chromenes in Water, under Neat Conditions, and Using Task‐Specific Ionic Liquid.. ChemInform 44:1.
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