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Original Articles

One-Pot, Three-Component Synthesis of α-Aminophosphonates Catalyzed by Acyclic Acidic Ionic Liquids

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Pages 2520-2526 | Received 14 Jan 2010, Accepted 23 Feb 2010, Published online: 19 Nov 2010

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Read on this site (6)

I. Kraicheva, I. Tsacheva, R. Nikolova, M. Topashka-Ancheva, I. Stoineva & B. Shivachev. (2017) Microwave assisted synthesis and X-ray structure of a novel anthracene-derived aminophosphonate. Enantioseparation of two α-aminophosphonates and genotoxicity in vivo. Phosphorus, Sulfur, and Silicon and the Related Elements 192:4, pages 403-409.
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Xing Wang, Yuan Cai, Jian Chen & Francis Verpoort. (2016) A simple protocol for the synthesis of α-substituted phosphonates. Phosphorus, Sulfur, and Silicon and the Related Elements 191:9, pages 1268-1273.
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I. Kraicheva, E. Vodenicharova, B. Shivachev, R. Nikolova, A. Kril, M. Topashka-Ancheva, I. Iliev, A. Georgieva, Ts. Gerasimova, T. Tosheva, E. Tashev, I. Tsacheva & K. Troev. (2013) Anthracene-Derived Bis-Aminophosphonates: Crystal Structure, In Vitro Antitumor Activity, and Genotoxicity In Vivo. Phosphorus, Sulfur, and Silicon and the Related Elements 188:11, pages 1535-1547.
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Hamid Reza Shaterian, Javad Farbodeh & Majid Mohammadnia. (2013) Nano-TiO2: An Eco-Friendly and Clean Reusable Heterogeneous Catalyst for Preparation of α-Aminophosphonates Under Ambient and Solvent-Free Conditions. Phosphorus, Sulfur, and Silicon and the Related Elements 188:7, pages 850-854.
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Dong Fang, Yanfang Cao & Jinming Yang. (2013) Clean Procedure for the Synthesis of α-Aminophosphonates Catalyzed by Biodegradable Ionic Liquid. Phosphorus, Sulfur, and Silicon and the Related Elements 188:7, pages 826-832.
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M. Anil Kumar & Kap Duk Lee. (2012) A Simple and Catalyst-Free One-Pot Synthesis of α-Aminophosphonates in Polyethylene Glycol. Phosphorus, Sulfur, and Silicon and the Related Elements 187:8, pages 899-905.
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Articles from other publishers (6)

D. Renuka, G. Mohan, S. Santhisudha & C. Suresh Reddy. (2023) Facile Synthesis of Diethyl {Aryl-[(1H-benzo[d]imidazol-2-yl)amino]methyl}phosphonates and Their Antimicrobial Activity. Russian Journal of General Chemistry 93:1, pages 136-147.
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Valmir B. Silva, Yane H. Santos, Renata Hellinger, Sergui Mansour, Antonin Delaune, Julien Legros, Sergey Zinoviev, Evandro S. Nogueira & Elisa S. Orth. (2022) Organophosphorus chemical security from a peaceful perspective: sustainable practices in its synthesis, decontamination and detection. Green Chemistry 24:2, pages 585-613.
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Shah Imtiaz, Jahangir Ahmad war, Syqa Banoo & Sarfaraz khan. (2021) α-Aminoazoles/azines: key reaction partners for multicomponent reactions. RSC Advances 11:19, pages 11083-11165.
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Tran Nguyen Minh An, Mahboob Alam, Nguyen Van Son, Nguyen Van Cuong, Nguyen Minh Quang, Mai Dinh Tri & Le Van Tan. (2019) Synthesis, Physical Chemistry, Molecular Docking, Bioactivities and Antioxidant Activity of α –Amino Phosphonates Based on Phenothiazine Using PEG–400 as Green Catalyst . ChemistrySelect 4:31, pages 8915-8920.
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György Keglevich, Erika Bálint, Réka Kangyal, Mária Bálint & Mátyás Milen. (2014) A Critical Overview of the Kabachnik-Fields Reactions Utilizing Trialkyl Phosphites in Water as the Reaction Medium: A Study of the Benzaldehyde-Benzylamine Triethyl Phosphite/Diethyl Phosphite Models. Heteroatom Chemistry 25:4, pages 282-289.
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Abbas Ali Jafari, Sakineh Amini & Fatemeh Tamaddon. (2013) TfOH/C-catalyzed one-pot three-component synthesis of α-amino phosphonates under solvent-free conditions. Journal of the Iranian Chemical Society 10:4, pages 677-684.
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