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Synthetic Communications
An International Journal for Rapid Communication of Synthetic Organic Chemistry
Volume 7, 1977 - Issue 3
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Original Articles

Activated Metals. A Procedure for the Preparation of Activated Magnesium and Zinc

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Pages 223-232 | Received 24 Feb 1977, Published online: 23 Oct 2006

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LuisA. Garza-Rodríguez, BorisI. Kharisov & OxanaV. Kharissova. (2009) Overview on the Synthesis of Activated Micro- and Nanostructurized Rieke Metals: History and Present State. Synthesis and Reactivity in Inorganic, Metal-Organic, and Nano-Metal Chemistry 39:5, pages 270-290.
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Ezzeddine Bouhel & MichaelW. Rathke. (1991) A Convenient Procedure for the Preparation of Reactive Zinc for the Reformatsky Reaction. Synthetic Communications 21:1, pages 133-136.
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René Csuk, Alois Fürstner, Heinz Sterk & Hans Weidmann. (1986) Synthesis of Carbohydrate Derived α-Methylene-γ-lactones by Diasterecseldctive, Low Temperature Reformatsky-Type Reactions. Journal of Carbohydrate Chemistry 5:3, pages 459-467.
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Articles from other publishers (44)

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Rhett C. Smith, Shashin Shah & John D. Protasiewicz. (2002) A role for free phosphinidenes in the reaction of magnesium and sterically encumbered ArPCl2 in solution at room temperature. Journal of Organometallic Chemistry 646:1-2, pages 255-261.
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Charles E. Chase, Michael B. Jarstfer, Atta M. Arif & F.G. West. (1995) Unexpected and efficient photochemical rearrangement of 6-hydroxyethylpyran-2-ones to 4-AIkylidene-5,6-dihydropyrans. Tetrahedron Letters 36:47, pages 8531-8534.
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P.G. Bruce & G. Miln. (1990) Sodium intercalation into the defect garnets Fe2(MoO4)3 and Fe2(WO4)3. Journal of Solid State Chemistry 89:1, pages 162-166.
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J. J. ZuckermanEd.Ed. & F. Bickelhaupt. 1989. Inorganic Reactions and Methods. Inorganic Reactions and Methods 237 253 .
A. Nadiri, G. Le Flem & C. Delmas. (1988) Lithium intercalation in perovskite-type phases (Ln = La, Nd). Journal of Solid State Chemistry 73:2, pages 338-347.
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E. Vedejs & S. Ahmad. (1988) Synthesis of the 11-membered cytochalasin ring system by modified reformatsky cyclization. Tetrahedron Letters 29:19, pages 2291-2294.
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Bodo Heyn, Bernd Hipler, Günter Kreisel, Heike Schreer & Dirk WaltherBodo Heyn, Bernd Hipler, Günter Kreisel, Heike Schreer & Dirk Walther. 1986. Anorganische Synthesechemie. Anorganische Synthesechemie 179 182 .
Borislav Bogdanović. (2003) Catalytic Synthesis of Organolithium and Organomagnesium Compounds and of Lithium and Magnesium Hydrides—Applications in Organic Synthesis and Hydrogen Storage. Angewandte Chemie International Edition in English 24:4, pages 262-273.
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Borislav Bogdanović. (2006) Katalytische Synthese von Organolithium‐ und ‐magnesium‐Verbindungen sowie von Lithium‐ und Magnesiumhydriden – Anwendungen in der organischen Synthese und als Wasserstoffspeicher. Angewandte Chemie 97:4, pages 253-264.
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K. Peter & C. Vollhardt. 1984. 299 324 .
John F. Honek, Michael L. Mancini & Bernard Belleau. (1983) New strategy for the synthesis of key anthracycline precursors. Tetrahedron Letters 24:3, pages 257-260.
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Saul Wolfe. 1983. Current Trends in Organic Synthesis. Current Trends in Organic Synthesis 101 114 .
W.E. Lindsell. 1982. Comprehensive Organometallic Chemistry. Comprehensive Organometallic Chemistry 155 252 .
Ernst Peter Künding & Celia Perret. (2004) Low Temperature Grignard Reactions with Pure Mg Slurries. Trapping of cyclopropylmethyl and benzocyclobutenylmethyl Grignard reagents with CO 2 . Helvetica Chimica Acta 64:8, pages 2606-2613.
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E.Alexander Hill. (1979) Magnesium. Journal of Organometallic Chemistry 176, pages 1-135.
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R. T. ARNOLD & S. T. KULENOVIC. (2016) ChemInform Abstract: ACTIVATED METALS. A PROCEDURE FOR THE PREPARATION OF ACTIVATED MAGNESIUM AND ZINC. Chemischer Informationsdienst 8:47.
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