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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 31, 2001 - Issue 17
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Original Articles

THE SYNTHESIS OF NOVEL SUBSTITUTED 2,5-DIOXO-1,2,3,4,5,6,7,8-OCTAHYDROQUINOLINES WITHOUT SOLVENT UNDER MICROWAVE IRRADIATION

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Pages 2657-2661 | Received 10 Nov 2000, Published online: 09 Nov 2006

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El Sayed H. El Ashry, El Sayed Ramadan, Hamida Abdel Hamid & Mohamed Hagar. (2005) Microwave‐Assisted Synthesis of Quinoline Derivatives from Isatin. Synthetic Communications 35:17, pages 2243-2250.
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Zhi‐Liang Shen, Shun‐Jun Ji & Wei‐Juan Zhou. (2005) Efficient and Environmentally Friendly Approach to the Synthesis of Ferrocenyl‐Substituted 1,5‐Diketone Compounds Under Solvent‐Free Conditions. Synthetic Communications 35:14, pages 1903-1909.
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Articles from other publishers (28)

Kadri Gokhan Ozokan & Seniz Kaban. (2022) Synthesis and Structure of Hetaryl Substituted 2,5-dioxo-1,2,3,4,5,6,7,8- Octahydroquinolines. Current Organic Synthesis 19:5, pages 664-672.
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Nandkishor D. Gawhale, Mahendra N. Lokhande, Santosh J. Uke, Satish P. Mardikar, Vikram U. Pandit & Manisha M. Kodape. (2022) An expedient synthesis of 3,4-dihydropyrimidin-2(1H)-ones derivatives under solvent free condition using titanium dioxide as a catalyst. Materials Today: Proceedings 53, pages 191-195.
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Vahideh ZadsirjanSayyed Jalil MahdizadehMajid M. HeraviMasumeh Heydari. (2018) Synthesis of novel N -functionalized 4-aryl-tetrahydrobiquinoline-2,5-(1 H ,3 H )-diones via one-pot three-component reaction: a joint experimental and computational study . Canadian Journal of Chemistry 96:12, pages 1071-1078.
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B. Maleki, A. V. Mofrad, R. Tayebee, A. Khojastehnezhad, H. Alinezhad & E. Rezaei Seresht. (2018) One-Pot Synthesis of 1,4-Dihydropyridine Derivatives Catalyzed by Silica-Coated Magnetic NiFe2O4 Nanoparticles-Supported H14[NaP5W30O110]. Russian Journal of General Chemistry 87:12, pages 2922-2929.
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Tariq A. Shah, Zubair Ahmad, N.P. Rath & M. Muneer. (2016) An environmentally benign approach for the synthesis of 3,4,5-trisubstituted 2-aminofurans under solvent-free conditions via isocyanide-based multicomponent approach. Tetrahedron Letters 57:24, pages 2638-2641.
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Ramin Ghorbani-Vaghei, Seyedeh Mina Malaekehpoor, Parisa Hasanein, Roya Karamyan & Mostafa Asadbegy. (2015) Synthesis and biological evaluation of new series 1,4-dihydropyridines. Research on Chemical Intermediates 42:5, pages 4715-4731.
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Ghodsi Mohammadi Ziarani, Leila Seyedakbari, Shima Asadi, Alireza Badiei & Marzieeh Yadavi. (2015) Ionic liquid supported nanoporous silica (SBA-IL) as an efficient and heterogeneous catalyst in the domino synthesis of polyhydroquinoline derivatives. Research on Chemical Intermediates 42:2, pages 499-509.
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B. Palakshi Reddy, S. Sarveswari & V. Vijayakumar. (2014) Ultrasound-mediated, uranyl nitrate hexahydrate-catalyzed synthesis of 1,4-dihydropyridines under mild conditions. Research on Chemical Intermediates 41:9, pages 6877-6883.
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Hossein Naeimi, Vajihe Nejadshafiee & Saeed Masoum. (2015) Copper@PMO nanocomposites as a novel reusable heterogeneous catalyst for microwave-assisted green synthesis of β-hydroxy-1,2,3-triazoles through experimental design protocol. Applied Organometallic Chemistry 29:5, pages 314-321.
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Ghodsi Mohammadi Ziarani, Shima Asadi, Alireza Badiei, Somayeh Mousavi & Parisa Gholamzadeh. (2013) One-pot four-component synthesis of 2,5-dioxo-1,2,3,4,5,6,7,8-octahydroquinolines catalyzed by silica-based sulfonic acid. Research on Chemical Intermediates 41:2, pages 637-645.
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Nilesh J. Thumar & Manish P. Patel. (2011) Synthesis, characterization and biological activity of some new carbostyril bearing 1H-pyrazole moiety. Medicinal Chemistry Research 21:8, pages 1751-1761.
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Maya Shankar Singh & Sushobhan Chowdhury. (2012) Recent developments in solvent-free multicomponent reactions: a perfect synergy for eco-compatible organic synthesis. RSC Advances 2:11, pages 4547.
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Ibrahim S. A. Hafiz, Mahmoud M. M. Ramiz & Ahmed A. M. Sarhan. (2011) Activated Anilide in Heterocyclic Synthesis: Synthesis of New Dihydropyridines, Dihydropyridazines and Thiourea Derivatives. Chinese Journal of Chemistry 29:6, pages 1154-1162.
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Girijesh K. Verma, Keshav Raghuvanshi, Rajiv K. Verma, Pratibha Dwivedi & M.S. Singh. (2011) An efficient one-pot solvent-free synthesis and photophysical properties of 9-aryl/alkyl-octahydroxanthene-1,8-diones. Tetrahedron 67:20, pages 3698-3704.
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Nilesh J. Thumar & Manish P. Patel. (2011) Synthesis, characterization, and antimicrobial evaluation of carbostyril derivatives of 1H-pyrazole. Saudi Pharmaceutical Journal 19:2, pages 75-83.
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R. Surendra Kumar, A. Idhayadhulla, A. Jamal Abdul Nasser & J. Selvin. (2011) Synthesis and anticoagulant activity of a new series of 1,4-dihydropyridine derivatives. European Journal of Medicinal Chemistry 46:2, pages 804-810.
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Anand SacharPoonam GuptaShallu GuptaR. L. Sharma. (2010) A novel approach towards the synthesis of tricyclic systems based on pyridine, pyran, thiopyran, azepine, oxepin, thiepin, and pyrimidine rings under different solvent conditions. Canadian Journal of Chemistry 88:5, pages 478-484.
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Juhua Peng, Wenjuan Hao, Xiang Wang, Shujiang Tu, Ning Ma & Ge Zhang. (2009) Microwave-assisted Synthesis of Pyrazolo[4,3- f ]quinolin-7-one Derivatives via Multi-component Reactions . Chinese Journal of Chemistry 27:9, pages 1707-1710.
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Nuno R. Candeias, Luís C. Branco, Pedro M. P. Gois, Carlos A. M. Afonso & Alexandre F. Trindade. (2009) More Sustainable Approaches for the Synthesis of N-Based Heterocycles. Chemical Reviews 109:6, pages 2703-2802.
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El Sayed H. El Ashry, Laila F. Awad, Yeldez El Kilany & Elsayed I. Ibrahim. 2009. Advances in Heterocyclic Chemistry Volume 98. Advances in Heterocyclic Chemistry Volume 98 1 141 .
Shujiang Tu, Xiaotong Zhu, Jinpeng Zhang, Jianing Xu, Yan Zhang, Qian Wang, Runhong Jia, Bo Jiang, Junyong Zhang & Changsheng Yao. (2006) New potential biologically active compounds: Design and an efficient synthesis of N-substituted 4-aryl-4,6,7,8-tetrahydroquinoline-2,5(1H,3H)-diones under microwave irradiation. Bioorganic & Medicinal Chemistry Letters 16:11, pages 2925-2928.
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E.S.H. El Ashry, A.A. Kassem & E. Ramadan. 2006. Advances in Heterocyclic Chemistry Volume 90. Advances in Heterocyclic Chemistry Volume 90 1 123 .
Xue Sen Fan, Yan Zhen Li, Xin Ying Zhang, Gui Rong Qu, Jian Ji Wang & Xue Yuan Hu. (2006) An efficient and green synthesis of 1,4-dihydropyridine derivatives through multi-component reaction in ionic liquid. Heteroatom Chemistry 17:5, pages 382-388.
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Dariusz Bogdal. 2005. Microwave-assisted Organic Synthesis. Microwave-assisted Organic Synthesis 47 190 .
Shujiang Tu, Hong Jiang, Fang Fang, Youjian Feng, Songlei Zhu, Tuanjie Li, Xiaojing Zhang & Daqing Shi. (2019) Synthesis of 2-amino-3-ethoxycarbonyl-4-aryl- 4H,5H -pyrano-[3,2- c ]benzopyran-5-one . Journal of Chemical Research 2004:6, pages 396-398.
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Shujiang Tu, Chunbao Miao, Fang Fang, Feng Youjian, Tuanjie Li, Qiya Zhuang, Xiaojing Zhang, Songlei Zhu & Daqing Shi. (2004) New potential calcium channel modulators: design and synthesis of compounds containing two pyridine, pyrimidine, pyridone, quinoline and acridine units under microwave irradiation. Bioorganic & Medicinal Chemistry Letters 14:6, pages 1533-1536.
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Hortensia Rodrı́guez, Margarita Suarez, Rolando Pérez, Alain Petit & André Loupy. (2003) Solvent-free synthesis of 4-aryl substituted 5-alkoxycarbonyl-6-methyl-3,4-dihydropyridones under microwave irradiation. Tetrahedron Letters 44:18, pages 3709-3712.
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Shujiang Tu, Qihua Wei, Hengjun Ma, Daqing Shi, Yuan Gao & Guiyou Cui. (2010) ChemInform Abstract: The Synthesis of Novel Substituted 2,5‐Dioxo‐1,2,3,4,5,6,7,8‐octahydroquinolines Without Solvent under Microwave Irradiation.. ChemInform 32:51.
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