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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 50, 2020 - Issue 11
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SYNTHETIC COMMUNICATIONS REVIEWS

Chitosan-SO3H (CTSA) an efficient and biodegradable polymeric catalyst for the synthesis of 4,4′-(arylmethylene)bis(1H-pyrazol-5-ol) and α-amidoalkyl-β-naphthol’s

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Pages 1696-1711 | Received 19 Jan 2020, Published online: 24 Apr 2020

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Read on this site (4)

Pankaj Teli, Nusrat Sahiba & Shikha Agarwal. (2023) Unveiling the cutting-edge synthetic methods and multifaceted applications of bis(pyrazolyl)methanes: A comprehensive review of recent advances. Synthetic Communications 53:14, pages 1069-1103.
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Yinglei Wang, Wenhuan Li & Chaojun Du. (2022) One-pot Synthesis of Tetrahydrobenzo[4,5]imidazo[2, 1-b]quinazolin-1(2H)-ones Using β-Cyclodextrin-SO3H as a Biocompatible and Recoverable Catalyst in Water. Organic Preparations and Procedures International 54:1, pages 40-48.
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Articles from other publishers (12)

Ganesh B. Pund, Sambhaji T. Dhumal, Tejshri R. Deshmukh, Diksha B. Wahul, Krishna R. Mandave, Sujeet A. Gaware, Santosh S. Chavan, Mazahar Farooqui, Bhagwansing S. Dobhal & Madhav J. Hebade. (2023) Greener Synthetic Approach for 4,4′‐(Arylmethylene)bis(3‐methyl‐1H‐pyrazol‐5‐ol) Derivatives in an Aqueous Medium using Theophylline as a Catalyst. ChemistrySelect 8:45.
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Rahman Beiranvand & Mohammad G. Dekamin. (2023) Trimesic acid-functionalized chitosan: A novel and efficient multifunctional organocatalyst for green synthesis of polyhydroquinolines and acridinediones under mild conditions. Heliyon 9:6, pages e16315.
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Hristo Petkov & Svilen P. Simeonov. (2023) Amidoalkyl Naphthols as Important Bioactive Substances and Building Blocks: A Review on the Current Catalytic Mannich-Type Synthetic Approaches. Applied Sciences 13:11, pages 6616.
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Zeinab Shahbazarab & Masoud Nasr‐Esfahani. (2023) Synthesis and Application of Fe 3 O 4 @RHA@MEL‐SO 3 H Nanocatalyst in the Synthesis of 1‐amidoalkyl‐2‐naphthols through a Statistical Approach to Optimize the Reaction Conditions . ChemistrySelect 8:17.
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Pankaj Teli, Nusrat Sahiba, Anu Manhas, Prakash C. Jha, Priyadarshi Meena & Shikha Agarwal. (2023) Synthetic Access to Bis(pyrazolyl)methanes using cost‐efficient Triethylammonium Hydrogen Sulfate Ionic Liquid: Evaluation of Antioxidant Activity via in silico and in vitro Studies . ChemistrySelect 8:15.
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Anant B. Kanagare, M.Sc.Ashok R. Yadav, Ashishkumar P. Katariya, Devidas S. Bhagat, Ajit K. Dhas, Dattatraya N. Pansare, Pratik A. Nagwade, Brajesh Kumar, Jaiprakash N. Sangshetti & Satish U. Deshmukh. (2023) Insights into 4,4′‐Arylmethylene‐Bis‐1 H ‐Pyrazol‐5‐Ols Scaffolds: Various Synthetic Routes and Their Applications . ChemistrySelect 8:4.
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Giovanna Bosica & Roderick Abdilla. (2023) Piperazine-Amberlyst®15-catalysed synthesis of 2-amino-4H-chromenes, chromeno[2,3-b]pyridines and chromeno[2,3-d]pyrimidines. Tetrahedron Green Chem 1, pages 100011.
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Elham Jazinizadeh, Abdolkarim Zare, Seyed Sajad Sajadikhah, Marziyeh Barzegar & Alireza Kohzadian. (2022) Synthesis, characterization and application of a magnetically separable nanocatalyst for the preparation of 4,4′-(arylmethylene)-bis(3-methyl-1-phenyl-1H-pyrazol-5-ol) derivatives. Research on Chemical Intermediates 48:12, pages 5059-5075.
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Anamika Gupta, Safia Iqbal, Roohi, Mohd. Kamil Hussain, Mohd. Rehan Zaheer & Krapa Shankar. (2022) Visible Light-Promoted Green and Sustainable Approach for One-Pot Synthesis of 4,4’-(Arylmethylene)bis(1H-pyrazol-5-ols), In Vitro Anticancer Activity, and Molecular Docking with Covid-19 M pro . ACS Omega 7:38, pages 34583-34598.
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Ankita Chaudhary, Sharda Pasricha, Harsimar Kaur & Nishita Avasthi. (2022) Multicomponent reactions through pristine and modified chitosans: current status and future prospects. Journal of the Iranian Chemical Society 19:6, pages 2191-2253.
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Mahdieh Sadeghpour & Abolfazl Olyaei. (2021) Recent advances in the synthesis of bis(pyrazolyl)methanes and their applications. Research on Chemical Intermediates 47:11, pages 4399-4441.
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Hossein Mousavi. (2021) A comprehensive survey upon diverse and prolific applications of chitosan-based catalytic systems in one-pot multi-component synthesis of heterocyclic rings. International Journal of Biological Macromolecules 186, pages 1003-1166.
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