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Original Articles

Synthesis and Biological Activity of Heterocyclic Aminophosphonates

Pages 433-436 | Published online: 17 Mar 2008

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Read on this site (4)

K. Boukallaba, A. Elachqar, A. El Hallaoui, A. Alami, S. El Hajji, B. Labriti, A. Atmani, B. El Bali, M. Lachkar, H. Allouchi, J. Martinez & V. Rolland. (2007) Synthesis of α-Heterocyclic α-Aminophosphonates, Part II: Morpholine, Piperidine, Pyrrolidine, Tetrahydrofurylmethylamine, N-Benzyl-N-Methylamine, and Aniline Derivatives. Phosphorus, Sulfur, and Silicon and the Related Elements 182:5, pages 1045-1052.
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K. Boukallaba, A. Elachqar, A. El Hallaoui, A. Alami, S. El Hajji, B. Labriti, J. Martinez & V. Rolland. (2006) Synthesis of New α-Heterocyclic α-Aminophosphonates. Phosphorus, Sulfur, and Silicon and the Related Elements 181:4, pages 819-823.
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Bogdan Boduszek, Tomasz Olszewski, Waldemar Goldeman & Magdalena Konieczna. (2006) Aminophosphinic Acids in a Pyridine Series: Cleavage of Pyridine-2- and Pyridine-4-methyl(amino)phosphinic Acids in Acidic Solutions. Phosphorus, Sulfur, and Silicon and the Related Elements 181:4, pages 787-795.
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Bogdan Boduszek. (2001) Synthesis of Novel Phosphonopeptides Derived from Pyridylmethylphosphonate Diphenyl Esters. Phosphorus, Sulfur, and Silicon and the Related Elements 176:1, pages 119-124.
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Articles from other publishers (10)

Sherifa M. Abu‐Bakr, Maha D. Khidre, Mohamed A. Omar, Samira A. Swelam & Hanem M. Awad. (2019) Synthesis of furo[3,2‐ g ]chromones under microwave irradiation and their antitumor activity evaluation . Journal of Heterocyclic Chemistry 57:2, pages 731-743.
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Jarosław Lewkowski, Marta Morawska, Rafał Karpowicz, Piotr Rychter, Diana Rogacz, Kamila Lewicka & Piotr Dobrzyński. (2017) Evaluation of ecotoxicological impact of new pyrrole-derived aminophosphonates using selected bioassay battery. Ecotoxicology 26:7, pages 914-929.
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Jarosław Lewkowski, Marta Morawska, Anna Kaczmarek, Diana Rogacz & Piotr Rychter. (2017) Novel N-Arylaminophosphonates Bearing a Pyrrole Moiety and Their Ecotoxicological Properties. Molecules 22:7, pages 1132.
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Jarosław Lewkowski, Zbigniew Malinowski, Agnieszka Matusiak, Marta Morawska, Diana Rogacz & Piotr Rychter. (2016) The Effect of New Thiophene-Derived Aminophosphonic Derivatives on Growth of Terrestrial Plants: A Seedling Emergence and Growth Test. Molecules 21:6, pages 694.
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Agnieszka Matusiak, Jarosław Lewkowski, Piotr Rychter & Robert Biczak. (2013) Phytotoxicity of New Furan-derived Aminophosphonic Acids, N -Aryl Furaldimines and 5-Nitrofuraldimine . Journal of Agricultural and Food Chemistry 61:32, pages 7673-7678.
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A. A. Bobrikova, M. P. Koroteev, I. I. Levina & E. E. Nifant’ev. (2009) Hydrophosphorylation of monosaccharides oximes and hydrazones. Russian Journal of General Chemistry 79:8, pages 1622-1631.
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A. A. Bobrikova, M. P. Koroteev, A. M. Koroteev, Yu. V. Nelyubina & E. E. Nifant’ev. (2009) Phosphorylation of N-glycosides derived from para-substituted aromatic amines. Russian Chemical Bulletin 57:9, pages 2021-2027.
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Jarosław Lewkowski, Romuald Skowroński, Dorota Krasowska & Rafał Karpowicz. (2006) Synthesis of the first pseudo-phosphonopeptides derived from (ferrocenyl)aminomethanephosphonous acids. Tetrahedron Letters 47:10, pages 1589-1591.
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Yanchang Shen & Ping Li. (2003) Stereoselective synthesis of substituted trifluoromethylated ethenylphosphonates via sequential transformations of bisphosphonate. Journal of Fluorine Chemistry 121:2, pages 219-222.
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Bogdan Boduszek. (2010) ChemInform Abstract: Synthesis and Biological Activity of Heterocyclic Aminophosphonates. ChemInform 31:9.
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