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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 42, 2012 - Issue 6
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Original Articles

Glycerin and CeCl3 · 7H2O: A New and Efficient Recyclable Reaction Medium for the Synthesis of Quinoxalines

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Pages 883-892 | Received 17 May 2010, Published online: 11 Nov 2011

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Read on this site (2)

Mozhgan Shahamirian, Sajad Kiani, Abbas Jorsaraei Talar & Saeed Khodabakhshi. (2017) Functionalized Nano Graphene Platelets as Green Catalyst to Synthesize New and Known Benzoyl-1,4-diazanaphthalene and Study of Their Local Aromaticity. Polycyclic Aromatic Compounds 37:1, pages 81-91.
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Ghasem Rezanejade Bardajee, Farhang Mizani, Iman Rostami & Ali Mohamadi. (2013) FeCl3Mediated Simple, Green, and Efficient Method for the One-Pot Synthesis of Pyrazine-based Polycyclic Aromatic Compounds under Mild Conditions. Polycyclic Aromatic Compounds 33:5, pages 419-429.
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Articles from other publishers (23)

Venkata Durga Nageswar Yadavalli & Ramesh Katla. (2023) An overview of quinoxaline synthesis by green methods: recent reports. Physical Sciences Reviews 8:10, pages 3323-3392.
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Anton V. Dolzhenko. 2022. Heterocycles. Heterocycles 301 338 .
Wendy A. Loughlin & Asmaa Boufridi. 2022. Comprehensive Heterocyclic Chemistry IV. Comprehensive Heterocyclic Chemistry IV 638 725 .
Mandana Alipour, Zinatossadat Hossaini, Samad Khaksar & Faramarz Rostami-Charati. (2021) An Efficient and Green Procedure for the Synthesis of Quinoxaline Derivatives using 3,5-Bis(trifluoromethyl)phenylammonium triflate (BFPAT) Organocatalyst. Letters in Organic Chemistry 18:3, pages 183-186.
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Anton V. Dolzhenko. 2021. Green Synthetic Approaches for Biologically Relevant Heterocycles. Green Synthetic Approaches for Biologically Relevant Heterocycles 393 470 .
Pranav S. Chandrachood, Amol R. Jadhav, Dinesh R. Garud, Nirmala R. Deshpande, Vedavati G. Puranik & Rajashree V. Kashalkar. (2020) An efficient method for the synthesis of quinoxaline derivatives catalyzed by titanium silicate-1. Research on Chemical Intermediates 46:12, pages 5219-5230.
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Mohamed Abd-Elmonem, Ramadan A. Mekheimer, Alaa M. Hayallah, Fatma A. Abo Elsoud & Kamal U. Sadek. (2020) Recent Advances in the Utility of Glycerol as a Benign and Biodegradable Medium in Heterocyclic Synthesis. Current Organic Chemistry 23:28, pages 3226-3246.
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Sourav De, Bidisha Sarkar, Gajanan Raosaheb Jadhav, Selva Kumar Ramasamy, Subhasis Banerjee, Anbalagan Moorthy, Priyankar Paira & Ashok Kumar S K. (2018) Experimental and Theoretical Study on the Biomolecular Interaction of Novel Acenaphtho Quinoxaline and Dipyridophenazine Analogues. ChemistrySelect 3:38, pages 10593-10602.
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KRISHNA S INDALKAR, CHETAN K KHATRI & GANESH U CHATURBHUJ. (2017) Rapid, efficient and eco-friendly procedure for the synthesis of quinoxalines under solvent-free conditions using sulfated polyborate as a recyclable catalyst. Journal of Chemical Sciences 129:2, pages 141-148.
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Praveen V. Shitre, Rajkumar R. Harale, Bhaskar R. Sathe & Murlidhar S. Shingare. (2016) Silica nanosphere–graphene oxide (SiO2–GO) hybrid catalyzed facile synthesis of functionalized quinoxaline derivatives. Research on Chemical Intermediates 43:2, pages 829-841.
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Sevil Vaghefi Moghaddam & Hassan Valizadeh. (2016) Ionic liquid functionalized cellulose as an efficient heterogeneous catalyst for the facile and green synthesis of benzoxazine, pyrazine and quinoxaline derivatives in aqueous media. Journal of the Iranian Chemical Society 13:8, pages 1517-1524.
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Javier Peralta-Cruz, Mónica Díaz-Fernández, Alberto Ávila-Castro, David Ortegón-Reyna & Armando Ariza-Castolo. (2016) An experimental and theoretical study of intramolecular regioselective oxidations of 6-substituted 2,3-dimethylquinoxaline derivatives. New Journal of Chemistry 40:6, pages 5501-5515.
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Seyed Meysam Baghbanian. (2015) Propylsulfonic acid functionalized nanozeolite clinoptilolite as heterogeneous catalyst for the synthesis of quinoxaline derivatives. Chinese Chemical Letters 26:9, pages 1113-1116.
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Vijayakumar Badathala. (2015) Acid treated clays: preparation, characterization and catalytic activity for synthesis of quinoxaline derivatives. Journal of Porous Materials 22:3, pages 779-786.
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Kapil Kumar, Sagar Ravso Mudshinge, Sandeep Goyal, Mukesh Gangar & Vipin A. Nair. (2015) A catalyst free, one pot approach for the synthesis of quinoxaline derivatives via oxidative cyclisation of 1,2-diamines and phenacyl bromides. Tetrahedron Letters 56:10, pages 1266-1271.
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Anton V. Dolzhenko & Anna V. Dolzhenko. 2015. Green Synthetic Approaches for Biologically Relevant Heterocycles. Green Synthetic Approaches for Biologically Relevant Heterocycles 101 139 .
Faouzi Chahdoura, Isabelle Favier & Montserrat Gómez. (2014) Glycerol as Suitable Solvent for the Synthesis of Metallic Species and Catalysis. Chemistry - A European Journal 20:35, pages 10884-10893.
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Reihaneh Malakooti, Ghasem Rezanejade Bardajee, Somayyeh Hadizadeh, Hassan Atashin & Hadiseh Khanjari. (2013) An iron Schiff base complex loaded mesoporous silica nanoreactor as a catalyst for the synthesis of pyrazine-based heterocycles. Transition Metal Chemistry 39:1, pages 47-54.
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Reihaneh Malakooti, Ghasem Rezanejade Bardajee, Hesamaldin Mahmoudi & Nahale Kakavand. (2013) Zirconium Schiff-Base Complex Modified Mesoporous Silica as an Efficient Catalyst for the Synthesis of Nitrogen Containing Pyrazine Based Heterocycles. Catalysis Letters 143:8, pages 853-861.
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Hari K. Kadam, Salman Khan, Rupesh A. Kunkalkar & Santosh G. Tilve. (2013) Graphite catalyzed green synthesis of quinoxalines. Tetrahedron Letters 54:8, pages 1003-1007.
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Yanlong Gu & François Jérôme. (2013) Bio-based solvents: an emerging generation of fluids for the design of eco-efficient processes in catalysis and organic chemistry. Chemical Society Reviews 42:24, pages 9550.
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A. Venkat Narsaiah & J. Kranthi Kumar. (2012) ChemInform Abstract: Glycerin and CeCl 3 ·7H 2 O: A New and Efficient Recyclable Reaction Medium for the Synthesis of Quinoxalines. . ChemInform 43:32, pages no-no.
Crossref
Saeed Khodabakhshi & Bahador Karami. (2012) A rapid and eco-friendly synthesis of novel and known benzopyrazines using silica tungstic acid (STA) as a new and recyclable catalyst. Catalysis Science & Technology 2:9, pages 1940.
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