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Original Articles

OPTICALLY ACTIVE 1-AMINOALKYLPHOSPHONIC ACIDS

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Pages 119-144 | Received 30 Oct 1986, Published online: 13 Dec 2006

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Mahankali Pavan Phani Kumar, Anuradha Vejendla, C. Gladis Raja Malar, Subramanyam Chennamsetty, Subrahmanyam Talari & Nagalakshmi Vedula. (2023) In silico molecular docking study and nano TiO2-SiO2 catalyzed microwave facilitated synthesis of new bis(α-aminophosphonates) as potential anti-diabetic agents. Phosphorus, Sulfur, and Silicon and the Related Elements 198:10, pages 808-821.
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Mahammad Sadik Shaik, Maheshwara Reddy Nadiveedhi, Mohan Gundluru, Sreelakshmi Poola, Rajasekhar Allagadda, Appa Rao Chippada & Suresh Reddy Cirandur. (2020) Green synthesis of diethyl((2-iodo-4-(trifluoromethyl)phenyl)amino)(aryl)methyl)phosphonates as potent α-glucosidase inhibitors. Synthetic Communications 50:4, pages 587-601.
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Renzhe Qian, Jeannie Horak & Friedrich Hammerschmidt. (2017) Conversion of nitriles to 1-aminophosphonic acids and preparation of phosphahomocysteines of high enantiomeric excess. Phosphorus, Sulfur, and Silicon and the Related Elements 192:6, pages 737-744.
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Ch. Subramanyam, Sk. Thaslim Basha, G. Madhava, Sk. Nayab Rasool, Sk. Adam, S. Durga Srinivasa Murthy & C. Naga Raju. (2017) Synthesis, spectral characterization and bioactivity evaluation of novel α-aminophosphonates. Phosphorus, Sulfur, and Silicon and the Related Elements 192:3, pages 267-270.
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Zhifu Jiang, Jian Zhao, Beibei Gao, Shuo Chen, Wenyan Qu, Xiangdong Mei, Changhui Rui, Jun Ning & Dongmei She. (2013) Synthesis and Application of N-Tosyl Piperidinyl-Containing α-Aminophosphonates. Phosphorus, Sulfur, and Silicon and the Related Elements 188:8, pages 1026-1037.
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Javier Cervantes-González, Selene Lagunas-Rivera & Mario Ordóñez. (2011) Reversal Diastereoselectivity in the Benzylation of Phosphonopropanoamides. Phosphorus, Sulfur, and Silicon and the Related Elements 186:4, pages 707-711.
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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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Sheng-Lou Deng, Isabelle Baglin, Mohammed Nour, Oxana Flekhter, Claudio Vita & Christian Cavé. (2007) Synthesis of Ursolic Phosphonate Derivatives as Potential Anti-HIV Agents. Phosphorus, Sulfur, and Silicon and the Related Elements 182:5, pages 951-967.
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Babak Kaboudin & Abbas Rahmani. (2004) CONVENIENT SYNTHESIS OF 1-AMINOALKYLPHOSPHONATES UNDER SOLVENT-FREE CONDITIONS. Organic Preparations and Procedures International 36:1, pages 82-86.
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Marcin Drag, Pawel Kafarski, Jean-Luc Pirat & Henri-Jean Cristau. (2002) Unexpected Rearrangement of Diethyl (±)(S,S)-1,2-epoxy-2-Phenylpentylphosphonate by NH 3(aqu.) : An Easy Entry to Ethyl 1-Formyl-1-Phenylbutylphosphonate. Phosphorus, Sulfur, and Silicon and the Related Elements 177:5, pages 1153-1156.
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Jeffrey Trautmann, AliricaI. Suarez, Pakamas Tongcharoensirikul, GregoryW. Muth & CharlesM. Thompson. (2002) A Facile Route to Substituted Dimethoxy Phosphonothionates Using Dimethyl Thiophosphite. Phosphorus, Sulfur, and Silicon and the Related Elements 177:2, pages 471-477.
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Donovan Green, Said Elgendy, Geeta Patel, Emmanuel Skordalakes, ChristopherA. Goodwin, MichealF. Scully, VijayV. Kakkar & JohnJ. Deadman. (2000) SUBSTRATE RELATED O,O-DIALKYLDIPEPTIDYLY ψ CARBOXYBENZYLPHOSPHONATES, A NEW TYPE OF THROMBIN INHIBITOR. Phosphorus, Sulfur, and Silicon and the Related Elements 156:1, pages 151-155.
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Marian Miko Zajczyk, Piotr żwa & Józef Drabowicz. (1999) Asymmetric Synthesis of Aminophosphonic Acids. Phosphorus, Sulfur, and Silicon and the Related Elements 144:1, pages 157-160.
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Zdzislaw Glowacki & Maria Hoffmann. (1998) 31P Nmr Determination of the Enantiomeric Composition of N-Phthaloyl-1-Aminoalkyl-Phosphonate Monoesters using 1-(1-Naphthyl)Ethylamine and Ephedrine as the Chiral Agents. Phosphorus, Sulfur, and Silicon and the Related Elements 134:1, pages 279-285.
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Catherine Guéguen, Elie About-Jaude, Noël Collignon & Philippe Savignac. (1996) A New and Efficient Synthesis of α-Amino Cycloalkyl-Phosphonic Acids via Electrophilic Azidation of Cycloalkylphosphonates. Synthetic Communications 26:22, pages 4131-4143.
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Shizheng Zhu, Bin Xu, Jie Zhang, Chaoyue Qin, Qicheng Huang & Chunxu Qu. (1996) SYNTHESIS OF NOVEL α-(N-PENTAFLUORO-PHENYLAMINO)BENZYLPHOSPHONATES AND PHOSPHONIC ACIDS. Phosphorus, Sulfur, and Silicon and the Related Elements 112:1-4, pages 219-224.
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Ute Schmidt, Günther Oehme & Hanswalter Krause. (1996) Catalytic stereoselective synthesis of α-Amino phosphonic acid derivatives by asymmetric hydrogenation. Synthetic Communications 26:4, pages 777-781.
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Zdzisław Głowacki, Maria Hoffmann & Janusz Rachó. (1995) 31P NMR DETERMINATION OF THE ENANTIOMERIC COMPOSITION OF N-PROTECTED 1-AMINOALKYLPHOSPHONATES USING 1-(1-NAPHTHYL)ETHYLAMINE AND EPHEDRINE AS THE CHIRAL AGENTS. Phosphorus, Sulfur, and Silicon and the Related Elements 104:1-4, pages 21-32.
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KevinJ. Koeller, NigamP. Rath & ChristopherD. Spilling. (1995) REACTIONS OF CHIRAL PHOSPHORUS ACID DIAMIDES: LEWIS ACID CATALYZED ADDITION TO IMINES AND OXIDATION WITH SnCl4 . Phosphorus, Sulfur, and Silicon and the Related Elements 103:1-4, pages 171-181.
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V.P. Kukhar'V.A. Soloshonok & V.A. Solodenko. (1994) Asymmetric Synthesis of Phosphorus Analogs of Amino Acids. Phosphorus, Sulfur, and Silicon and the Related Elements 92:1-4, pages 239-264.
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Ludwig Maier & PeterJ. Diel. (1994) Synthesis, Physical and Biological Properties of the Phosphorus Analogues Of Phenylalanine and Related Compounds. Phosphorus, Sulfur, and Silicon and the Related Elements 90:1-4, pages 259-279.
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Ru-Yu Chen & Li-Juan Mao. (1994) Synthesis and Antitumor Activity of Novel α-Substituted Aminomethylphosphonates. Phosphorus, Sulfur, and Silicon and the Related Elements 89:1-4, pages 97-104.
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Robert Jacquier, Mohamed Lhassani, Clement Petrus & Francoise Petrus. (1993) ASYMMETRIC SYNTHESIS OF 1-AMINOALKYLPHOSPHONIC ACIDS. Phosphorus, Sulfur, and Silicon and the Related Elements 81:1-4, pages 83-87.
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Chengye Yuan, Shusen Li, Guoquan Wang & Yilin Ma. (1993) STUDIES ON ORGANOPHOSPHORUS COMPOUNDS 78. NEW ASPECTS ON THE INDUCED ASYMMETRIC ADDITION OF DIALKYL PHOSPHITE TO ALDIMINES—AN EFFECTIVE SYNTHESIS OF CHIRAL 1-ARYLPHOSPHONOGLYCINE DERIVATIVES. Phosphorus, Sulfur, and Silicon and the Related Elements 81:1-4, pages 27-35.
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Anne-Marie, Chollet-Gravey, Liliane Vo-Quang, Yen Vo-Quang & Francois Le Goffic. (1991) A Preparative Synthesis of 1-Amino-3-hydroxypropylphosphonic Acid (Phosphonic Analogue of Homoserine). Synthetic Communications 21:18-19, pages 1847-1858.
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M.R.M.D. Charandabi, M.L. Ettel, M.P. Kaushik, J.H. Huffman & K.W. Morse. (1989) CHARACTERIZATION AND PROPERTIES OF SOME DIALKYL-1-(N,N-DIALKYLAMINO)-ALKYLPHOSPHONATES AND THEIR HYDROCHLORIDE SALTS. Phosphorus, Sulfur, and Silicon and the Related Elements 44:3-4, pages 223-234.
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G?raldine Castelot-Deliencourt, Xavier Pannecoucke & Jean-Charles Quirion. (2001) Diastereoselective synthesis of ?-substituted ?-amidophosphonates. Tetrahedron Letters 42:6, pages 1025-1028.
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Dieter Enders, Livio Tedeschi & Jan Willem Bats. (2000) Asymmetric Synthesis ofα-Substitutedβ-Nitrophosphonic Acids by Phospha-Analogous Michael Addition to Aromatic Nitroalkenes. Angewandte Chemie International Edition 39:24, pages 4605-4607.
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Dieter Enders, Livio Tedeschi & Jan Willem Bats. (2000) Asymmetrische Syntheseα-substituierterβ-Nitrophosphonsäuren durch phospha-analoge Michael-Addition an aromatische Nitroalkene. Angewandte Chemie 112:24, pages 4774-4776.
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Masaya Sawamura, Hitoshi Hamashima & Yoshihiko Ito. (2000) Rhodium-Catalyzed Enantioselective Michael Addition of (1-Cyanoethyl)phosphonate: Synthesis of Optically Active Phosphonic Acid Derivatives with Phosphorus-Substituted Quaternary Asymmetric Carbon Center. Bulletin of the Chemical Society of Japan 73:11, pages 2559-2562.
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Imre Schlemminger, Yoshinobu Saida, Harald Gröger, Wolfgang Maison, Nathalie Durot, Hiroaki Sasai, Masakatsu Shibasaki & Jürgen Martens. (2000) Concept of Improved Rigidity:  How to Make Enantioselective Hydrophosphonylation of Cyclic Imines Catalyzed by Chiral Heterobimetallic Lanthanoid Complexes Almost Perfect. The Journal of Organic Chemistry 65:16, pages 4818-4825.
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A Atmani, J.-C Combret, C Malhiac & J.Kajima Mulengi. (2000) β,γ-Unsaturated α-aminophosphonates: synthesis and reactivity. Tetrahedron Letters 41:32, pages 6045-6048.
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Francisco Palacios, Marie J Gil, Eduardo Martı́nez de Marigorta & Marta Rodrı́guez. (2000) Synthesis and Reactivity of Imines Derived from Bisphosphonates and 3-Phosphorylated 2-Aza-1,3-dienes. Tetrahedron 56:34, pages 6319-6330.
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