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Original Articles

The Reaction of N-Isocyaniminotriphenylphosphorane With Biacetyl in the Presence of (E)-Cinnamic Acids: Synthesis of Fully Substituted 1,3,4-Oxadiazole Derivatives via Intramolecular AZA-Wittig Reactions of in Situ Generated Iminophosphoranes

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Pages 642-648 | Received 08 Feb 2012, Accepted 28 May 2012, Published online: 31 May 2013

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Read on this site (7)

Jafar Taran, Ali Ramazani, Hamideh Aghahosseini, Farideh Gouranlou, Roghayeh Tarasi, Mehdi Khoobi & Sang Woo Joo. (2017) One-pot three-component syntheses of α-aminophosphonates from a primary amine, quinoline-4-carbaldehyde and a phosphite in the presence of MCM-41@PEI as an efficient nanocatalyst. Phosphorus, Sulfur, and Silicon and the Related Elements 192:6, pages 776-781.
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Mona Ashtary, Ali Ramazani, AliReza Kazemizadeh, Nahid Shajari, Nadia Fattahi & Sang Woo Joo. (2016) Four-component synthesis of ferrocene-containing 1,3,4-oxadiazoles from N-isocyaniminotriphenylphosphorane (Ph3PNNC), a primary amine, a cyclic ketone and ferrocene carboxylic acid. Phosphorus, Sulfur, and Silicon and the Related Elements 191:10, pages 1402-1407.
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Mehdi Bahrami, Ali Ramazani, Younes Hanifehpour, Nadia Fattahi, Saeid Taghavi Fardood, Pegah Azimzadeh Asiabi & Sang Woo Joo. (2016) In situ generated stabilized phosphorus ylides mediated a mild and efficient method for the preparation of some new sterically congested electron-poor N-vinylated heterocycles. Phosphorus, Sulfur, and Silicon and the Related Elements 191:10, pages 1368-1374.
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Ali Ramazani, Yavar Ahmadi, Nadia Fattahi, Hamideh Ahankar, Mousa Pakzad, Hamideh Aghahosseini, Aram Rezaei, Saeid Taghavi Fardood & Sang Woo Joo. (2016) Synthesis of 1,3,4-oxadiazoles from the reaction of N-isocyaniminotriphenylphosphorane (NICITPP) with cyclohexanone, a primary amine and an aromatic carboxylic acid via intramolecular aza-Wittig reaction of in situ generated iminophosphoranes. Phosphorus, Sulfur, and Silicon and the Related Elements 191:7, pages 1057-1062.
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Azizeh Ahmadi, Azra Bagherzadeh, Ali Ramazani, Yavar Ahmadi, Sang Woo Joo & Hamideh Ahankar. (2016) The reaction of N-isocyaniminotriphenylphosphorane (NICITPP) with some of cyclic ketones and a primary amine in the presence of 3-phenyl-2-propynoic acid. Phosphorus, Sulfur, and Silicon and the Related Elements 191:6, pages 871-875.
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Ali Jafari, Ali Ramazani, Hamideh Ahankar, Pegah Azimzadeh Asiabi, Fariba Sadri & Sang Woo Joo. (2016) Three-component reaction of N-isocyaniminotriphenylphosphorane (Ph3PNNC), biacetyl, and a carboxylic acid in water. Phosphorus, Sulfur, and Silicon and the Related Elements 191:3, pages 373-380.
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Ali Ramazani, Fatemeh Zeinali Nasrabadi, Hamideh Ahankar, Pegah Azimzadeh Asiabi, Fariba Sadri & Sang Woo Joo. (2016) The reaction of N-isocyaniminotriphenylphosphorane (NICITPP) with 2-oxopropyl-1-benzenecarbothioate and a primary amine in the presence of benzoic acid derivatives. Phosphorus, Sulfur, and Silicon and the Related Elements 191:2, pages 230-234.
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Anuja S. Patil.Shrinivas K. Mohite. (2021) An Overview: 1, 3, 4- oxadiazole and its uses. Asian Journal of Research in Chemistry, pages 389-392.
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Ahmad Shaabani, Reza Mohammadian, Ronak Afshari, Seyyed Emad Hooshmand, Mohammad Taghi Nazeri & Siamak Javanbakht. (2020) The status of isocyanide-based multi-component reactions in Iran (2010–2018). Molecular Diversity 25:2, pages 1145-1210.
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Johan Lindstrom & Eva Bednářová. 2001. Encyclopedia of Reagents for Organic Synthesis. Encyclopedia of Reagents for Organic Synthesis 1 5 .
Gerardo M. Ojeda-Carralero, Leonardo G. Ceballos, Julieta Coro & Daniel G. Rivera. (2020) One Reacts as Two: Applications of N -Isocyaniminotriphenylphosphorane in Diversity-Oriented Synthesis . ACS Combinatorial Science 22:10, pages 475-494.
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Ashraf A. Aly, Stefan Bräse, Alaa A. Hassan, Nasr K. Mohamed, Lamiaa E. Abd El-Haleem & Martin Nieger. (2020) Synthesis of New Planar-Chiral Linked [2.2]Paracyclophanes-N-([2.2]-Paracyclophanylcarbamoyl)-4-([2.2]Paracyclophanylcarboxamide, [2.2]Paracyclophanyl-Substituted Triazolthiones and -Substituted Oxadiazoles. Molecules 25:15, pages 3315.
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Nazariy T. Pokhodylo, Roman D. Savka, Olga Ya. Shyyka & Mykola D. Obushak. (2020) One‐pot CuAAC synthesis of ( 1 H ‐1,2,3‐triazol‐1‐yl)methyl‐1,3,4/1,2,4‐oxadiazoles starting from available chloromethyl‐1,3,4/1,2,4‐oxadiazoles . Journal of Heterocyclic Chemistry 57:7, pages 2969-2976.
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Majid Heravi & Vahideh Zadsirjan. 2020. Recent Advances in Applications of Name Reactions in Multicomponent Reactions. Recent Advances in Applications of Name Reactions in Multicomponent Reactions 139 268 .
Surayyo Razzoqovna Razzoqova, Shaxnoza Kadirova, Jamshid Mengnorovich Ashurov, Dilnoza Salamovna Rakhmonova, Abdukhakim Ziyaev & Nusrat Agzamovich Parpiev. (2019) 5-(3-Hydroxyphenyl)-1,3,4-oxadiazole-2(3 H )-thione hemihydrate . IUCrData 4:11.
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A. Ramazani, M. Sheikhi, Y. Hanifehpour, P. A. Asiabi & S. W. Joo. (2018) Molecular Structure, Electronic Properties, Homo–Lumo, MEP and NBO Analysis of (N-Isocyanimino) Triphenylphosphorane (Ph3PNNC): DFT Calculations. Journal of Structural Chemistry 59:3, pages 529-540.
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Goutam Brahmachari. 2017. Catalyst-free Organic Synthesis. Catalyst-free Organic Synthesis 11 218 .
Goutam Brahmachari. 2015. Room Temperature Organic Synthesis. Room Temperature Organic Synthesis 189 240 .
Suman Bala, Sunil Kamboj, Anu Kajal, Vipin Saini & Deo Nanadan Prasad. (2014) 1,3,4-Oxadiazole Derivatives: Synthesis, Characterization, Antimicrobial Potential, and Computational Studies. BioMed Research International 2014, pages 1-18.
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