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Reaktive E=C(p‐p)π‐Systeme. 54 [1] Reaktionen des Perfluor‐2‐arsapropens,F3CAs=CF2 (1), mit H‐aciden Verbindungen Me2EH (E = N,P, As) und MeE′H (E′ = O,S, Se)
Authors:Thomas Albers,Joseph Grobe,Andreas H. Maulitz,Ernst‐Ulrich Wü  rthwein
Abstract:Reactive E=C(p‐p)π‐Systems. 54 [1] Reactions of perfluoro‐2‐arsapropene, F3CAs=CF2 (1), with H‐acidic compounds Me2EH (E = N, P, As) and MeE′H (E′ = O, S, Se) The reactions of the perfluoro‐2‐arsapropene ( 1 ) with H‐acidic compounds Me2EH (E = N, P, As) and MeE′H (E′ = O, S, Se), respectively, proceed via addition to the As=C double bond yielding either secondary arsanes F3C(H)AsCF2X (X = NMe2, PMe2, OMe, SMe) or AsX derivatives (X = AsMe2, SeMe). Me2‐AsH is obviously a border case nucleophile because, besides the AsX derivative as main product, small amounts of the arsane are formed indicative for the reverse addition pathway. With the strong base Me2NH, the addition is followed immediately by HF elimination producing the fairly stable arsaalkene F3CAs=C(F)NMe2 ( 4 ) which had already been obtained by reaction of HAs(CF3)2 with three equivalents of Me2NH. The novel rather labile compounds were identified by spectroscopic (NMR, GC/MS) investigations. – Quantum chemical DFT calculations [B3LYP/6‐311+G(d,p)] were carried out to determine the relative energy of the isomeric products and the thermodynamics of the addition reactions.
Keywords:Perfluoro‐, Arsaalkene  Reactivity  H‐acidic Compounds HEMe2  HEMe  Quantum chemical calculations
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