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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 46, 2016 - Issue 3
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Original Articles

Object-oriented synthetic approach toward angular and linear fused pyrazoloquinolines of biological importance with InCl3 catalyst

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Pages 232-241 | Received 06 Oct 2015, Published online: 06 Feb 2016

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Rui Jiang, Yangxiu Mu, Wei Zhang, Yu Hong, Zafar Iqbal, Jing Hou, Zhixiang Yang & Dong Tang. (2022) Acid-promoted synthesis of pyrazolo[4,3-c]quinoline derivatives by employing pyrazole-arylamines and β-keto esters via cleavage of C–C bonds. Synthetic Communications 52:18, pages 1796-1804.
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Sundaravel Vivek Kumar, Shanmugam Muthusubramanian & Subbu Perumal. (2019) Recent Progress in the Synthesis of Pyrazolopyridines and Their Derivatives. Organic Preparations and Procedures International 51:1, pages 1-89.
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Articles from other publishers (9)

Yaseen A. M. M. Elshaier, Ashraf A. Aly, Mohamed Abd El-Aziz, Hazem M. Fathy, Alan B. Brown & Mohamed Ramadan. (2021) A review on the synthesis of heteroannulated quinolones and their biological activities. Molecular Diversity 26:4, pages 2341-2370.
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Andrzej Danel, Ewa Gondek, Mateusz Kucharek, Paweł Szlachcic & Arkadiusz Gut. (2022) 1H-Pyrazolo[3,4-b]quinolines: Synthesis and Properties over 100 Years of Research. Molecules 27:9, pages 2775.
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Vrushabendra Basavanna, Srikantamurthy Ningaiah, Manasa Chandramouli, Anjali Sobha & Shridevi Doddamani. (2021) Quinolinyl-pyrazoles: synthesis and pharmacological evolution in the recent decennial. Journal of the Iranian Chemical Society 18:7, pages 1479-1522.
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Pushpendra Yadav, Annapurna Awasthi, Sabapathi Gokulnath & Dharmendra Kumar Tiwari. (2021) DMSO as a Methine Source in TFA-Mediated One-Pot Tandem Regioselective Synthesis of 3-Substituted-1-Aryl-1 H -Pyrazolo-[3,4- b ]quinolines from Anilines and Pyrazolones . The Journal of Organic Chemistry 86:3, pages 2658-2666.
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Moaz M. Abdou, Zeynel Seferoğlu, Mahmoud Fathy, Takashiro Akitsu, Mamoru Koketsu, Ruba Kellow & Eric Amigues. (2018) Synthesis and chemical transformations of 3-acetyl-4-hydroxyquinolin-2(1H)-one and its N-substituted derivatives: bird’s eye view. Research on Chemical Intermediates 45:3, pages 919-934.
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Thangaraj Arasakumar, Sadasivam Mathusalini, Subashini Gopalan, Selvaraj Shyamsivappan, Athar Ata & Palathurai Subramaniam Mohan. (2017) Biologically active perspective synthesis of heteroannulated 8-nitroquinolines with green chemistry approach. Bioorganic & Medicinal Chemistry Letters 27:7, pages 1538-1546.
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Larry Yet. 2017. 277 313 .
Thangaraj Arasakumar, Sadasivam Mathusalini, Krishnasamy Lakshmi, Palathurai Subramaniam Mohan, Athar Ata & Chia‐Her Lin. (2016) ChemInform Abstract: Object‐Oriented Synthetic Approach Toward Angular and Linear Fused Pyrazoloquinolines of Biological Importance with InCl 3 Catalyst. . ChemInform 47:28.
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Guo-Bo Deng, Hai-Bing Li, Xu-Heng Yang, Ren-Jie Song, Ming Hu & Jin-Heng Li. (2016) Dehydrogenative [2 + 2 + 1] Heteroannulation Using a Methyl Group as a One-Carbon Unit: Access to Pyrazolo[3,4- c ]quinolines . Organic Letters 18:9, pages 2012-2015.
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