2017
DOI: 10.1002/chem.201703373
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Is the R3Si Moiety in Metal–Silyl Complexes a Z ligand? An Answer from the Interaction Energy

Abstract: The computation of metal-silyl interaction energies indicates the existence of situations in which the silyl group behaves as a Z-type ligand according to the Green method of covalent-bond classification. There is a scale of relative intrinsic silylicity Π, defined as the ratio of the intrinsic silyl-to-triflate interaction energy of a silyltriflate as a reference compound relative to the silyl-to-metal interaction of given complex, that can reveal in a straightforward manner the propensity of SiR groups to be… Show more

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Cited by 27 publications
(47 citation statements)
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“…Similar conclusions can be drawn for [ 2 d ] + and [ 4 ] + (silylicity related to [Si n BuH 2 ] + Π ≈1.3). Such high intrinsic silylicities Π were observed essentially for cationic metal–silane adducts showing catalytic activity in hydrosilylation reactions.…”
Section: Resultsmentioning
confidence: 85%
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“…Similar conclusions can be drawn for [ 2 d ] + and [ 4 ] + (silylicity related to [Si n BuH 2 ] + Π ≈1.3). Such high intrinsic silylicities Π were observed essentially for cationic metal–silane adducts showing catalytic activity in hydrosilylation reactions.…”
Section: Resultsmentioning
confidence: 85%
“…[18] Interestingly,t he productso ft he reactiono f[ 1a,b] [BArF 24 ]w ith HSiEt 3 , [ 2a,b] [BArF 24 ]a re neithers o-called s complexes [3f, 19] nor the products of the oxidative addition of the SiÀHb ond to the Ir center [3f, 19a, b, 20] or any of its arrested states, [21] but [(IrH)!SiEt 3 ] + donor-acceptor complexes (Scheme 1) resulting from concerted transfero fh ydride from the silane to the electrophilic Ir III centera nd captureo ft he labile silylium moiety. [17][18]22] The present investigation of the reactiono f[ 1b] [BArF 24 ]w ith phenylsilane and n-butylsilane revealedt hat not only such [(IrH)!SiRH 2 ] + adducts are formed in solutionb ut also that THF assists actively their transformation into highly unstable cationic Ir III silylenes, of whicht wo iridacyclice xamples were successfully trapped by reactive crystallization. The silylene complex arising from the reaction of [1b] [BArF 24 ]w ith H 3 SiPh was found to promote the catalytic hydrodefluorination(HDF) of fluoroalkanes.…”
Section: Introductionmentioning
confidence: 76%
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