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Original Articles

ORGANISCHE PHOSPHORVERBINDUNGEN 78 HERSTELLUNG UND EIGENSCHAFTEN VON N-PHOSPHONOMETHYLGLYCIN DERIVATEN

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Pages 313-321 | Received 28 Mar 1984, Published online: 19 Dec 2006

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Read on this site (13)

Ludwig Maier. (1999) What are the Requirements in the Glyphosate Molecule in Order to be Herbicidally Active?. Phosphorus, Sulfur, and Silicon and the Related Elements 144:1, pages 429-432.
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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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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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Ludwig Maier. (1991) ORGANIC PHOSPHORUS COMPOUNDS 1001 SYNTHESIS AND PROPERTIES OF N-HYDROXYCARBONYLMETHYL-AMINOMETHYL-DIALKYLPHOSPHINE OXIDES. Phosphorus, Sulfur, and Silicon and the Related Elements 63:3-4, pages 237-241.
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Ludwig Maier & Tammo Winkler. (1991) ORGANIC PHOSPHORUS COMPOUNDS 99.1 SYNTHESIS AND PROPERTIES OF N-PHOSPHONOMETHYL-AMINOACETALDEHYDE. Phosphorus, Sulfur, and Silicon and the Related Elements 63:1-2, pages 65-69.
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Ludwig Maier. (1991) ORGANIC PHOSPHORUS COMPOUNDS 95.1 A SIMPLE METHOD FOR THE PREPARATION OF N-DIHYDROXYPHOSPHONYLMETHYL-GLYCINE (GLYPHOSATE). Phosphorus, Sulfur, and Silicon and the Related Elements 61:1-2, pages 65-67.
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Jamal Nasser, Elie About-jaudet & Noel Collignon. (1991) α-FUNCTIONAL CYCLOALKYLPHOSPHONATES. II. SYNTHESIS OF α-AMINOMETHYL AND α-(N-SUBSTITUTED)-AMINOMETHYLCYCLOALKYLPHOSPHONATES. Phosphorus, Sulfur, and Silicon and the Related Elements 55:1-4, pages 137-146.
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Jamal Nasser, Elie About-jaudet & Noel Collignon. (1990) α-FUNCTIONAL CYCLOALKYLPHOSPHONATES I. SYNTHESIS. Phosphorus, Sulfur, and Silicon and the Related Elements 54:1-4, pages 171-179.
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Ludwig Maier. (1990) ORGANIC PHOSPHORUS COMPOUNDS 881 SULFONIC- AND SULFINIC ACID ANALOGUES OF GLYPHOSATE. Phosphorus, Sulfur, and Silicon and the Related Elements 47:1-2, pages 43-46.
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PeterJ. Diel & Ludwig Maier Ciba-Geigy Ag. (1988) ORGANISCHE PHOSPHORVERBINDUNGEN 85.1 HERSTELLUNG, EIGENSCHAFTEN UND BIOLOGISCHE WIRKUNG VON N-AMINOGLYPHOSATE UND AZAGLYPHOSATE. Phosphorus and Sulfur and the Related Elements 39:3-4, pages 159-164.
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PeterJ. Diel & Ludwig Maier. (1987) ORGANISCHE PHOSPHORVERBINDUNGEN 791 HERSTELLUNG UND EIGENSCHAFTEN VON α-AMINO-ω-CARBOXYALKYLPHOSPHON-UND-PHOSPHINSÄUREN. Phosphorus and Sulfur and the Related Elements 29:2-4, pages 201-209.
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Mahsa Eghbali Toularoud, Mehrdad Pourayoubi, Michal Dušek, Václav Eigner & Krishnan Damodaran. (2018) Chiral one-dimensional hydrogen-bonded architectures constructed from single-enantiomer phosphoric triamides. Acta Crystallographica Section C Structural Chemistry 74:5, pages 608-617.
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Qiang Li, Bijun Liu, Yin Tian, Qianhong Yu, Wanjun Mu, Hongyuan Wei, Dongqi Wang, Xingliang Li & Shunzhong Luo. (2017) Thermodynamics of the Protonation of an Analogue of Glyphosate, N-(phosphonomethyl)-l-proline, in Aqueous Solutions. Journal of Solution Chemistry 46:5, pages 1048-1058.
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Frady G. Adly, Johncarlo Maddalena & Ashraf Ghanem. (2014) Rh 2 ( S ‐1,2‐NTTL) 4 : A Novel Rh 2 ( S ‐PTTL) 4 Analog With Lower Ligand Symmetry for Asymmetric Synthesis of Chiral Cyclopropylphosphonates . Chirality 26:11, pages 764-774.
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N. S. Gulyukina, N. N. Makukhin & I. P. Beletskaya. (2011) Synthesis methods of (1-aminocyclopropyl)phosphonic acids. Russian Journal of Organic Chemistry 47:5, pages 633-649.
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Zvi RappoportR. S. Edmundson. 2010. Patai's Chemistry of Functional Groups. Patai's Chemistry of Functional Groups.
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Ya-Qin Guo, Bing-Ping Yang, Jun-Ling Song & Jiang-Gao Mao. (2008) Zinc(II) Phosphonate Cage Compounds Derived from Zn 6 (Zn)L 6 Centered Octahedral Cores . Crystal Growth & Design 8:2, pages 600-605.
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N. S. Gulyukina, A. V. Varakuta & I. P. Beletskaya. (2007) Synthesis of 1-arylcyclopropylphosphonates. Russian Chemical Bulletin 56:9, pages 1884-1890.
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Nicolas Rabasso, Nicolas Louaisil & Antoine Fadel. (2006) Synthesis of α-amino tetrahydropyranyl-, tetrahydrothiopyranyl-, 4- and 3-piperidinyl-phosphonic acids via phosphite addition to iminium ions. Tetrahedron 62:31, pages 7445-7454.
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Qi Yue, Jin Yang, Guang-Hua Li, Guo-Dong Li & Jie-Sheng Chen. (2006) Homochiral Porous Lanthanide Phosphonates with 1D Triple-Strand Helical Chains:  Synthesis, Photoluminescence, and Adsorption Properties. Inorganic Chemistry 45:11, pages 4431-4439.
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Kristof Moonen, Inge Laureyn & Christian V. Stevens. (2004) Synthetic Methods for Azaheterocyclic Phosphonates and Their Biological Activity. Chemical Reviews 104:12, pages 6177-6216.
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Huw M. L. Davies & Gene H. Lee. (2004) Enantioselective Synthesis of Cyclopropylphosphonates Containing Quaternary Stereocenters Using a D 2 -Symmetric Chiral Catalyst Rh 2 ( S -biTISP) 2 . Organic Letters 6:13, pages 2117-2120.
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E. Najdenova, A. Vassilev, Yu. Popova & K. Troev. (2003) Phosphonylmethylaminocyclopentane‐1‐carboxylic acid. Heteroatom Chemistry 14:3, pages 229-230.
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Irina L. Odinets, Oleg I. Artyushin, Georgy V. Bodrin, Pavel V. Petrovskii & Tatyana A. Mastryukova. (2002) 2,5,8-Tris(diphenylphosphoryl)- and 2,5,8-tris(diphenylthiophosphoryl)-2,3,4,5,6,7,8,9-octahydro-1H-cyclopent[e]-asym-indacene-2,5,8-tricarbonitriles as a novel type of polycondenced systems. Mendeleev Communications 12:4, pages 135-136.
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Antoine Fadel & Nicolas Tesson. (2000) Synthesis of Enantiomerically Pure (1S,2S)-1-Aminocyclopropanephosphonic Acids from (2S)-Methylcyclopropanone Acetal. European Journal of Organic Chemistry 2000:11, pages 2153-2159.
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Ludwig Maier. (2000) What are the requirements in the glyphosate molecule in order for it to be herbicidally active?. Heteroatom Chemistry 11:7, pages 454-469.
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Antoine Fadel. (1999) A Useful Synthesis of 1-Aminocyclopropanephosphonic Acid from Cyclopropanone Acetal. The Journal of Organic Chemistry 64:13, pages 4953-4955.
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Paul R. Hanson, Kevin T. Sprott & Aaron D. Wrobleski. (1999) Intramolecular cyclopropanation reactions en route to novel P-heterocycles. Tetrahedron Letters 40:8, pages 1455-1458.
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Derek H.R Barton & Richard A Vonder Embse. (1998) The invention of radical reactions. Part 39. The reaction of white phosphorus with carbon-centered radicals. An improved procedure for the synthesis of phosphonic acids and further mechanistic insights. Tetrahedron 54:41, pages 12475-12496.
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Shoko Yamazaki, Takashi Takada, Tomomi Imanishi, Yumiko Moriguchi & Shinichi Yamabe. (1998) Lewis Acid-Promoted [2 + 1] Cycloaddition Reactions of a 1-Seleno-2-silylethene to 2-Phosphonoacrylates:  Stereoselective Synthesis of a Novel Functionalized α-Aminocyclopropanephosphonic Acid. The Journal of Organic Chemistry 63:17, pages 5919-5928.
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Stephen Hanessian, Louis-David Cantin, Stéphan Roy, Daniele Andreotti & Arthur Gomtsyan. (1997) The synthesis of enantiomerically pure, symmetrically substituted cyclopropane phosphonic acids — A constrained analog of the GABA antagonist phaclophen. Tetrahedron Letters 38:7, pages 1103-1106.
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Ulrich Groth, Lutz Lehmann, Lutz Richter & Ulrich Schöllkopfh. (2006) Syntheses of α‐Aminophosphonic Acids, VI. Synthesis of Diastereomerically Pure 1‐Aminocyclopropylphosphonic Acids. Liebigs Annalen der Chemie 1993:4, pages 427-431.
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Steffen Bieler & Kurt Kellner. (1993) Zur reaktion von vinyl- und allylphosphonaten mit dihalocarbenen — dihalocyclopropyl- und dihalocyclopropylmethylphosphonate. Journal of Organometallic Chemistry 447:1, pages 15-19.
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I van Assche, M Soroka, A Haemers, M Hooper, D Blanot & J van Heijenoort. (1991) Synthesis and antibacterial evaluation of phosphonic acid analogues of diaminopimelic acid. European Journal of Medicinal Chemistry 26:5, pages 505-515.
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P. J. DIEL & L. MAIER. (2016) ChemInform Abstract: ORGANIC PHOSPHORUS COMPOUNDS. 78. SYNTHESIS AND PROPERTIES OF N‐PHOSPHONOMETHYLGLYCINE DERIVATIVES. Chemischer Informationsdienst 16:43.
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