Synthesis and Lewis Acid Properties of Neutral Silver(III) Adducts Containing the AgIII(CF3)3 Moiety
Luca Demonti,
Daniel Joven‐Sancho,
Nathalie Saffon‐Merceron
et al.
Abstract:The acetonitrile AgIII complex [AgIII(CF3)3(NCCH3)] (2) has been reported independently by Eujen and Naumann in the last century, albeit with intriguing NMR discrepancy. In their reports, 2 was claimed to be obtained starting from either [AgIII(CF3)3Cl]– (3.Cl) or [AgIII(CF3)4]– (1) via halide abstraction using AgNO3 or acidic treatment, resp. These two synthetic routes are herein reinvestigated. The feasibility of Naumann’s method is demonstrated, thus providing 2 yet accompanied by its s‐triazinyl derivative… Show more
Herein, the first example of a homoleptic AgIII complex stabilized by a monodentate N-donor ligand is presented. Na2[S2O8] oxidizes the linear AgI complex, [Na][Ag(succ)2] (1Na), to form a square planar...
Herein, the first example of a homoleptic AgIII complex stabilized by a monodentate N-donor ligand is presented. Na2[S2O8] oxidizes the linear AgI complex, [Na][Ag(succ)2] (1Na), to form a square planar...
Numerous reports invoke CuIII-F intermediates engaging in oxidative cross-couplings mediated by low/mid valent copper and formal sources of “F+” oxidants. These elusive and typically instable CuIII fluorides have been rarely characterized or spectroscopically identified, making their existence and participation within catalytic cycles somehow questionable. We have authenticated a stable organocopper(III) fluoride that undergoes Csp−CF3 bond formation upon addition of silyl-capped alkynes following a 2e― CuIII/CuI redox shuttle. This finding strongly supports the intermediacy of CuIII fluorides in C−C coupling. We review herein the State of the Art about well-defined CuIII fluorides enabling cross-coupling reactions.
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