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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 9, 1979 - Issue 4
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Original Articles

α-Cuprophosphonates. V. The Reaction of 3 and 4-Oxoalkane Phosphonates and Their Use in Aminoalkanephosphonic Acids Synthesis

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Pages 287-294 | Received 04 Oct 1978, Published online: 05 Dec 2006

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Jen-Wen Yu & SteveK. Huang. (1997) SELECTIVE PREPARATION OF OXACYCLIC AND LINEAR PHOSPHONATES AND THE EFFECT OF DIETHYL PHOSPHONATE GROUP ON SPECTROSCOPIC DETERMINATION OF THE STRUCTURES. Phosphorus, Sulfur, and Silicon and the Related Elements 131:1, pages 107-127.
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Jen-Wen Yu & SteveK. Huang. (1997) SYNTHESIS OF DIETHYL 3-ARYL-3-OXOPROPYLPHOSPHONATES. Organic Preparations and Procedures International 29:2, pages 214-218.
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Articles from other publishers (14)

James D. Grayson & Alexander J. Cresswell. (2021) γ-Amino phosphonates via the photocatalytic α-C–H alkylation of primary amines. Tetrahedron 81, pages 131896.
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Xia Mi, Chenyang Wang, Mengmeng Huang, Yusheng Wu & Yangjie Wu. (2014) Silver-catalyzed carbonphosphonation of α,α-diaryl allylic alcohols: synthesis of β-aryl-γ-ketophosphonates. Org. Biomol. Chem. 12:42, pages 8394-8397.
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Gangaram Pallikonda, Manab Chakravarty & Manoj K. Sahoo. (2014) An easy access to α-aryl substituted γ-ketophosphonates: Lewis acid mediated reactions of 1,3-diketones with α-hydroxyphosphonates and tandem regioselective C–C bond cleavage. Org. Biomol. Chem. 12:36, pages 7140-7149.
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Zvi RappoportR. S. Edmundson. 2010. Patai's Chemistry of Functional Groups. Patai's Chemistry of Functional Groups.
Philippe Savignac & Bogdan Iorga. 2003. Modern Phosphonate Chemistry. Modern Phosphonate Chemistry.
Thomas R. Verhoeven. 2001. Encyclopedia of Reagents for Organic Synthesis. Encyclopedia of Reagents for Organic Synthesis.
Christopher A. Verbicky & Charles K. Zercher. (2000) Zinc-Mediated Chain Extension of β-Keto Phosphonates. The Journal of Organic Chemistry 65:18, pages 5615-5622.
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Isabelle Gautier, Virginie Ratovelomanana-Vidal, Philippe Savignac & Jean-Pierre Genêt. (1996) Asymmetric hydrogenation of β-ketophosphonates and β-ketothiophosphonates with chiral ru (II) catalysts. Tetrahedron Letters 37:43, pages 7721-7724.
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Elisabeth Öhler & Silvia Kotzinger. (2006) Darstellung von (3‐Amino‐1‐alkenyl)phosphonsäuren aus allylischen α‐ und γ‐Hydroxyphosphonaten. Sigmatrope Umlagerung von (1‐Azido‐2‐alkenyl)phosphonsäureestern. Liebigs Annalen der Chemie 1993:3, pages 269-280.
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Gu Chen Huai, Jennifer L. Gage, Stephen D. Barrett & Paul Knochel. (1990) SN2? Substitutions of 1,3-Dichloropropenes with the Functionalized Copper-Zinc Reagents RCu(CN)ZnX. Tetrahedron Letters 31:13, pages 1829-1832.
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Mitsuo Sekine, Masashi Nakajima, Akiko Kume, Akio Hashizume & Tsujiaki Hata. (1982) Silyl Phosphites. XVIII. Versatile Utility of α-(Trimethylsilyloxy)alkylphosphonates as Key Intermediates for Transformation of Aldehydes into Several Carbonyl Derivatives. Bulletin of the Chemical Society of Japan 55:1, pages 224-238.
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Louis S. Hegedus. (1981) Transition metals in organic synthesis annual survey covering the year 1979. Journal of Organometallic Chemistry 207, pages 185-341.
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Edwin M. Kaiser. (1980) Lithium. Journal of Organometallic Chemistry 203, pages 1-148.
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P. SAVIGNAC, A. BREQUE, F. MATHEY, J.‐M. VARLET & N. COLLIGNON. (2016) ChemInform Abstract: α‐CUPROPHOSPHONATES. V. THE REACTION OF 3‐ AND 4‐OXOALKANEPHOSPHONATES AND THEIR USE IN AMINOALKANEPHOSPHONIC ACID SYNTHESIS. Chemischer Informationsdienst 10:35.
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