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Haloacyl complexes of boron, [(CF3)3BC(O)Hal]- (Hal=F, Cl, Br, I)
Authors:Finze Maik  Bernhardt Eduard  Willner Helge  Lehmann Christian W
Institution:FB C-Anorganische Chemie, Bergische Universit?t Wuppertal, Gaussstrasse 20, 42097 Wuppertal, Germany. maik.finze@uni-duesseldorf.de
Abstract:The haloacyltris(trifluoromethyl)borate anions (CF3)3BC(O)Hal]- (Hal=F, Cl, Br, I) have been synthesized by reacting (CF3)3BCO with either MHal (M=K, Cs; Hal=F) in SO2 or MHal (M=nBu4N]+, Et4N]+, Ph4P]+; Hal=Cl, Br, I) in dichloromethane. Metathesis reactions of the fluoroacyl complex with Me3SiHal (Hal=Cl, Br, I) led to the formation of its higher homologues. The thermal stabilities of the haloacyltris(trifluoromethyl)borates decrease from the fluorine to the iodine derivative. The chemical reactivities decrease in the same order as demonstrated by a series of selected reactions. The new (CF3)3BC(O)Hal]- (Hal=F, Cl, Br) salts are used as starting materials in the syntheses of novel compounds that contain the (CF3)3B-C fragment. All borate anions (CF3)3BC(O)Hal]- (Hal=F, Cl, Br, I) have been characterized by multinuclear NMR spectroscopy (11B, 13C, 17O, 19F) and vibrational spectroscopy. PPh4](CF3)3BC(O)Br] crystallizes in the monoclinic space group P2/c (no. 13) and the bond parameters are compared with those of (CF3)3BCO and K(CF3)3BC(O)F]. The interpretation of the spectroscopic and structural data are supported by DFT calculations B3LYP/6-311+G(d)].
Keywords:acyl halides  borates  density functional calculations  NMR spectroscopy  structure elucidation
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