Stoichiometric Reactions of Acylnickel(II) Complexes with Electrophiles and the Catalytic Synthesis of Ketones
Author(s) -
Alexander C. Wotal,
Ryan D. Ribson,
Daniel J. Weix
Publication year - 2014
Publication title -
organometallics
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 1.231
H-Index - 172
eISSN - 1520-6041
pISSN - 0276-7333
DOI - 10.1021/om5004682
Subject(s) - chemistry , electrophile , ketone , reactivity (psychology) , catalysis , bromobenzene , coupling reaction , yield (engineering) , selectivity , medicinal chemistry , stoichiometry , organic chemistry , medicine , materials science , alternative medicine , pathology , metallurgy
Acylnickel(II) complexes feature prominently in cross-electrophile coupling (XEC) reactions that form ketones, yet their reactivity has not been systematically investigated. We present here our studies on the reactivity of acylnickel(II) complexes with a series of carbon electrophiles. Bromobenzene, α-chloroethylbenzene, bromooctane, and iodooctane were reacted with (dtbbpy)Ni II (C(O)C 5 H 11 )(Br) ( 1b ) and (dtbbpy)Ni II (C(O)tolyl)(Br) ( 1c ) to form a variety of organic products. While reactions with bromobenzene formed complex mixtures of ketones, reactions with α-chloroethylbenzene were highly selective for the cross-ketone product. Reactions with iodooctane and bromooctane also produced the cross-ketone product, but in intermediate yield and selectivity. In most cases the presence or absence of a chemical reductant (zinc) had only a small effect on the selectivity of the reaction. The coupling of 1c with iodooctane (60% yield) was translated into a catalytic reaction, the carbonylative coupling of bromoarenes with primary bromoalkanes (six examples, 60% average yield).
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