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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 44, 2014 - Issue 24
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Original Articles

Cleavage of Diethyl Chromonyl α-Aminophosponate with Nitrogen and Carbon Nucleophiles: A Synthetic Approach and Biological Evaluations of a Series of Novel Azoles, Azines, and Azepines Containing α-Aminophosphonate and Phosphonate Groups

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Pages 3610-3629 | Received 29 May 2014, Published online: 15 Oct 2014

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Read on this site (7)

Mohamed Hussien, Tarik E. Ali, Ibrahim El-Tantawy El Sayed, Abdelaleem Hassan Abdelaleem & H. M. Torkey. (2023) Ultrasound-assisted construction of novel diethyl {(4-oxo-1,4-dihydroquinolin-3-yl) (aryl/heteroarylamino)methyl}phosphonates using CdI2 nanoparticles as an efficient catalyst: Synthesis, characterization, and antifungal properties. Phosphorus, Sulfur, and Silicon and the Related Elements 198:10, pages 854-865.
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Jyothis Devasia, Aatika Nizam & Vasantha V. L.. (2022) Azole-Based Antibacterial Agents: A Review on Multistep Synthesis Strategies and Biology. Polycyclic Aromatic Compounds 42:8, pages 5474-5495.
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Mohammed A. Assiri, Tarik E. Ali, Mamdouh M. Ali & I. S. Yahia. (2018) Synthesis and anticancer activity of some novel diethyl {(chromonyl/pyrazolyl) [(4-oxo-2-phenyl-quinazolin-3(4H)-yl)amino]methyl}phosphonates. Phosphorus, Sulfur, and Silicon and the Related Elements 193:10, pages 668-674.
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Mohamed M. Hassan, Somaia M. Abdel-Kariem & Tarik E. Ali. (2017) Synthesis and antioxidant properties of some novel 1,3,4,2-oxadiazaphosphepino[6,7-c]quinolinones and pyrazolo[3,4:4′,3′]quinolino[5,1-c][1,4,2]oxazaphosphinine. Phosphorus, Sulfur, and Silicon and the Related Elements 192:7, pages 866-873.
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Tarik E. Ali, Magdy A. Ibrahim & Somaya M. El-Edfawy. (2017) Synthesis and cytotoxicity evaluation of some novel chromone annulated phosphorus heterocycles. Phosphorus, Sulfur, and Silicon and the Related Elements 192:7, pages 819-826.
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Tarik E. Ali & Somaia M. Abdel-Kariem. (2016) Electron ionization mass spectra of organophosphorus compounds Part V: Mass fragmentation modes of some azolyl, azinyl, and azepinyl phosphonates as cyclic α-aminophosphonates. Phosphorus, Sulfur, and Silicon and the Related Elements 191:9, pages 1223-1228.
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Articles from other publishers (15)

Ahmed A. Noser, Seham A. Ibrahim, Khalil M. Saad‐Allah, Maha M. Salem & Mohamed H. Baren. (2023) Facile One‐Pot Three Component Synthesis, Characterization, and Molecular Docking Simulations of Novel α‐Aminophosphonate Derivatives Based Pyrazole Moiety as Potential Antimicrobial Agent. Chemistry & Biodiversity 20:10.
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Vijay Kumar Juyal, Shweta Chand Thakuri, Mohit Panwar, Om Prakash & Viveka Nand. (2023) Synthesis, characterization, and in silico molecular docking study of bidentate hydroxy α-aminophosphonates derivative and its Mn(II), Fe(III) and Zn(II) metal complexes as potent antioxidant and antibacterial agents. Journal of the Indian Chemical Society 100:8, pages 101041.
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Nóra Popovics-Tóth, Trinh Dang Tran Bao, Ádám Tajti, Béla Mátravölgyi, Zsolt Kelemen, Franc Perdih, László HacklerJrJr, László G. Puskás & Erika Bálint. (2022) Three-Component Reaction of 3-Formyl-6-Methylchromone, Primary Amines, and Secondary Phosphine Oxides: A Synthetic and Mechanistic Study. ACS Omega 8:2, pages 2698-2711.
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Svetlana F. Malysheva, Vladimir A. Kuimov, Natalia A. Belogorlova, Ludmila A. Beloveghets, Alexander I. Albanov, Yurii K. Usoltsev & Boris A. Trofimov. (2022) Synthesis of Diorganylphosphine Oxides Bearing Hetarylalkyl Moieties and Study of Their Antimicrobial Activities. ChemistrySelect 7:35.
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Franca M. Cordero, Donatella Giomi & Fabrizio Machetti. 2022. Comprehensive Heterocyclic Chemistry IV. Comprehensive Heterocyclic Chemistry IV 308 434 .
T. E. Ali, M. A. Assiri, M. A. Ibrahim & I. S. Yahia. (2020) Nucleophilic Reactivity of a Novel 3-Chloro-3-(4,9-dimethoxy5-oxo-5H-furo[3,2-g]chromen-6-yl)prop-2-enal. Russian Journal of Organic Chemistry 56:5, pages 845-855.
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Long Chen, Xiao‐Yan Liu & Yun‐Xiang Zou. (2020) Recent Advances in the Construction of Phosphorus‐Substituted Heterocycles, 2009–2019. Advanced Synthesis & Catalysis 362:9, pages 1724-1818.
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Ibrahim A. Shaaban, Tarik E. Ali, Mohammed A. Assiri, Ahmed M. Fouda, Somaya M. Eledfawy & Noha M. Hassanin. (2020) Regioselective cyclization reaction of 2-imino-2H-chromene-3-carboxamide with triethyl phosphonoacetate; a combined spectral and computational studies. Journal of Molecular Structure 1199, pages 126935.
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Somaia M. Abdel‐kariem. (2019) Synthesis of Some Novel Thiadiazaphosphole, Oxazaphospholothiadiazaphosphole, Thiadiazaphosphinine, and Phosphonates Containing a 1,2,4‐Triazine Moiety. Journal of Heterocyclic Chemistry 56:7, pages 1922-1927.
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Tarik E. Ali, Mohammed A. Assiri, Noha M. Hassanin, I. S. Yahia & Mai S. A. Hussien. (2019) A Convenient Synthetic Route of Diethyl (4‐Oxo‐chromeno[2,3‐ d ]pyrimidin‐2(5)‐yl)phosphonates . Journal of Heterocyclic Chemistry 56:5, pages 1684-1686.
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Mohammed A. Assiri, Tarik E. Ali, Somaya M. El-Edfawy & I. S. Yahia. (2018) Synthesis and Characterization of Some Novel Phosphorylated 4-Oxo-2-phenylquinazolines. Journal of Heterocyclic Chemistry 55:8, pages 1955-1959.
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Manasa Shetty, Hai Huang & Jun Yong Kang. (2018) Regioselective Synthesis of α- and γ- Amino Quinolinyl Phosphonamides Using N -Heterocyclic Phosphines (NHPs) . Organic Letters 20:3, pages 700-703.
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Clementina Santos, Vera Silva & Artur Silva. (2017) Synthesis of Chromone-Related Pyrazole Compounds. Molecules 22:10, pages 1665.
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T. E. Ali, M. M. Ali, S. M. Abdel-Kariem & M. M. Ahmed. (2017) Reaction of 2-hydroxy-N′-[(4-oxo-4H-chromen-3-yl)methylidene]benzohydrazide with some phosphorus reagents. Synthesis and evaluation of anticancer activity of novel α-hydrazinophosphonic acid, 1,4,5,2λ5-oxadiazaphosphinines, and 1,3,2λ5-benzoxazaphosphinines bearing a chromone ring. Russian Journal of Organic Chemistry 53:6, pages 904-912.
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Tarik E. Ali & Somaya M. El-Edfawy. (2015) A convenient synthesis and biological evaluation of some novel linear and cyclic α-aminophosphonic acid derivatives containing a quinazolinone ring. Research on Chemical Intermediates 42:2, pages 1329-1347.
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