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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 40, 2010 - Issue 14
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Original Articles

Efficient, Ecofriendly, and Practical Process for the Synthesis of Quinoxalines Catalyzed by Amberlyst-15 in Aqueous Media

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Pages 2047-2056 | Received 28 Mar 2009, Published online: 17 Jun 2010

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Ankush Mishra, S. Singh, M. A. Quraishi & Vandana Srivastava. (2019) A Catalyst-Free Expeditious Green Synthesis of Quinoxaline, Oxazine, Thiazine, and Dioxin Derivatives in Water under Ultrasound Irradiation. Organic Preparations and Procedures International 51:4, pages 345-356.
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Cong-Ying Zhao, Ju-Yan Liu, Ying Wang, Xiao-Jun Zhao, Bin Yuan & Min-Min Yue. (2014) Efficient Method for the Synthesis of α,α′-Bis(arylmethylidene) Cycloalkanones Catalyzed by Bromodimethylsulfonium Bromide. Synthetic Communications 44:6, pages 827-835.
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Mohamed Dehamchia & Zine Régaïnia. (2013) Conventional and microwave-assisted solvent-free synthesis of fused [1,2,5]thiadiazolo[3,4-b]quinoxaline-2,2-dioxide derivatives. Journal of Sulfur Chemistry 34:3, pages 242-249.
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Y.V. D. Nageswar, K. Harsha Vardhan Reddy, K. Ramesh & S. Narayana Murthy. (2013) Recent Developments in the Synthesis of Quinoxaline Derivatives by Green Synthetic Approaches. Organic Preparations and Procedures International 45:1, pages 1-27.
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Articles from other publishers (28)

Fabián Amaya-García & Miriam M. Unterlass. (2022) Synthesis of 2,3-Diarylquinoxaline Carboxylic Acids in High-Temperature Water. Synthesis 54:15, pages 3367-3382.
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Wendy A. Loughlin & Asmaa Boufridi. 2022. Comprehensive Heterocyclic Chemistry IV. Comprehensive Heterocyclic Chemistry IV 638 725 .
H. B. El-Nassan. (2021) Amberlyst 15®: An Efficient Green Catalyst for the Synthesis of Heterocyclic Compounds. Russian Journal of Organic Chemistry 57:7, pages 1109-1134.
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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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Lukas BiesenThomas J. J. Müller. (2021) Multicomponent and One‐pot Syntheses of Quinoxalines. Advanced Synthesis & Catalysis 363:4, pages 980-1006.
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Lorenzo Seijo, Pierrick Ondet, Sandra Olivero & Elisabet Duñach. (2020) Heterogeneous catalysis for the tandem cyclisation of unsaturated alcohols. New Journal of Chemistry 44:25, pages 10479-10483.
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Jinghong PuXingxing LiuXinliang LuoZhenzhen ZhanYixin ZhangGuosheng Huang. (2018) Metal‐Free Synthesis of the Functionalized Quinoxalines via α ‐Aminocarbonyl Compounds with o ‐Phenylenediamine . ChemistrySelect 3:43, pages 12219-12222.
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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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Thomas Mathew, Attila Á. Papp, Farzaneh Paknia, Santos Fustero & G. K. Surya Prakash. (2017) Benzodiazines: recent synthetic advances. Chemical Society Reviews 46:10, pages 3060-3094.
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Bahman TAMAMI, Alireza SARDARIAN & Elaheh ATAOLLAHI. (2016) Synthesis and application of polyvinylimidazole-based Br{\o}nsted acidic ionic liquid grafted silica as an efficient heterogeneous catalyst in the preparation of quinoxaline derivatives. TURKISH JOURNAL OF CHEMISTRY 40, pages 422-433.
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Vakhid A. MamedovVakhid A. Mamedov. 2016. Quinoxalines. Quinoxalines 5 133 .
A. G. Mulik, D. R. Chandam, D. R. Patil, P. P. Patil, G. N. Mulik, S. T. Salunkhe & M. B. Deshmukh. (2015) Protic ionic liquids: a lucid, rational tool for synthesis of phthalazinediones, quinoxalines and benzopyrans. Research on Chemical Intermediates 41:12, pages 10085-10096.
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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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Giao H. Dang, Yen T.H. Vu, Quoc A. Dong, Dung T. Le, Thanh Truong & Nam T.S. Phan. (2015) Quinoxaline synthesis via oxidative cyclization reaction using metal–organic framework Cu(BDC) as an efficient heterogeneous catalyst. Applied Catalysis A: General 491, pages 189-195.
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Swati Samanta, Arpita Das Gupta & Asok K. Mallik. (2014) An expedient “on-water” synthesis of quinoxalines. Monatshefte für Chemie - Chemical Monthly 145:10, pages 1669-1673.
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Naushad Edayadulla & Yong Rok Lee. (2014) Cerium oxide nanoparticle-catalyzed three-component protocol for the synthesis of highly substituted novel quinoxalin-2-amine derivatives and 3,4-dihydroquinoxalin-2-amines in water. RSC Advances 4:22, pages 11459.
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Pradeep S. Jadhavar, Dinesh Kumar, Priyank Purohit, Bhavin V. Pipaliya, Asim Kumar, Srikant Bhagat & Asit K. Chakraborti. 2014. Green Chemistry: Synthesis of Bioactive Heterocycles. Green Chemistry: Synthesis of Bioactive Heterocycles 37 67 .
Kioumars Aghapoor, Farshid Mohsenzadeh, Atena Shakeri, Hossein Reza Darabi, Mitra Ghassemzadeh & Bernhard Neumüller. (2013) Catalytic application of recyclable silica-supported bismuth(III) chloride in the benzo[N,N]-heterocyclic condensation. Journal of Organometallic Chemistry 743, pages 170-178.
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Abhijeet Mulik, Dattatraya Chandam, Prasad Patil, Dayanand Patil, Suryabala Jagdale & Madhukar Deshmukh. (2013) Proficient synthesis of quinoxaline and phthalazinetrione derivatives using [C8dabco]Br ionic liquid as catalyst in aqueous media. Journal of Molecular Liquids 179, pages 104-109.
Crossref
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.
Crossref
Dinesh Kumar, Kapileswar Seth, Damodara N. Kommi, Srikant Bhagat & Asit K. Chakraborti. (2013) Surfactant micelles as microreactors for the synthesis of quinoxalines in water: scope and limitations of surfactant catalysis. RSC Advances 3:35, pages 15157.
Crossref
J. Jesús Morales-Castellanos, Karina Ramírez-Hernández, Nancy S. Gómez-Flores, Oscar R. Rodas-Suárez & Javier Peralta-Cruz. (2012) Microwave-assisted Solvent-free Synthesis and in Vitro Antibacterial Screening of Quinoxalines and Pyrido[2, 3b]pyrazines. Molecules 17:5, pages 5164-5176.
Crossref
Vakhid A. Mamedov & Nataliya A. Zhukova. 2012. 55 88 .
Ali Rahmatpour. (2012) Polystyrene-supported AlCl3 as a highly active and reusable heterogeneous lewis acid catalyst for the one-pot synthesis of quinoxalines. Heteroatom Chemistry 23:5, pages 472-477.
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Juyan Liu, Qian Liu, Wei Xu & Weilu Wang. (2011) Expeditious and Efficient Synthesis of Benzoxazoles, Benzothiazoles, Benzimidazoles Catalyzed by Ga(OTf) 3 under Solvent‐Free Conditions . Chinese Journal of Chemistry 29:8, pages 1739-1744.
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Michael M. Miller & Albert J. DelMonte. 2011. 371 402 .
Ju‐Yan Liu, Jing Liu, Jia‐Di Wang, De‐Quan Jiao & Hai‐Wang Liu. (2010) ChemInform Abstract: Efficient, Ecofriendly, and Practical Process for the Synthesis of Quinoxalines Catalyzed by Amberlyst‐15 in Aqueous Media.. ChemInform 41:51.
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