2013
DOI: 10.1021/om400439d
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Insertion, Rearrangement, and Coupling Processes in the Reactions of the Unsaturated Hydride Complex [W25-C5H5)2(H)(μ-PCy2)(CO)2] with Isocyanides

Abstract: The title complex reacted with stoichiometric amounts of CNR rapidly at room temperature or below to give two types of formimidoyl derivatives: the symmetrically bridged complexes [W 2 Cp 2 (μ-C,N:C,N-HCNR)(μ-PCy 2 )(CO) 2 ] (R = t Bu (W−W = 2.8645(5) Å), 4-C 6 H 4 OMe), and the asymmetrically bridged [W 2 Cp 2 {μ-C:N-HCN(Xyl)}(μ-PCy 2 )(CO) 2 ] (Cp = η 5 -C 5 H 5 ; Xyl = 2,6-C 6 H 3 Me 2 ). The latter complex underwent slow isomerization at room temperature to give the corresponding aminocarbyne derivative [W… Show more

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Cited by 26 publications
(16 citation statements)
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“…Isocyanide insertion into iron bridging hydride bond is observed in the dinuclear complex [Fe2(μ-H)(μ-PCy2)(CO)4(μ-CO)(dppm)] (8), leading to the formation of the bridging formimidoyl complex 9 (Scheme 4) [61]. This reaction is consistent with other similar isocyanide insertions into metal μ-H bond, which are more frequently observed in dinuclear group 6 and 9 metal complexes [62][63][64][65], and provides a unique synthetic route to the formation of bridging formimidoyl ligands.…”
Section: Insertion Reactions Involving Isocyanides In Diiron Complexessupporting
confidence: 85%
See 1 more Smart Citation
“…Isocyanide insertion into iron bridging hydride bond is observed in the dinuclear complex [Fe2(μ-H)(μ-PCy2)(CO)4(μ-CO)(dppm)] (8), leading to the formation of the bridging formimidoyl complex 9 (Scheme 4) [61]. This reaction is consistent with other similar isocyanide insertions into metal μ-H bond, which are more frequently observed in dinuclear group 6 and 9 metal complexes [62][63][64][65], and provides a unique synthetic route to the formation of bridging formimidoyl ligands.…”
Section: Insertion Reactions Involving Isocyanides In Diiron Complexessupporting
confidence: 85%
“…Coupling of isocyanide ligands involving dinuclear complexes is far less common [93][94][95]. Thus, the CNR coupling shown in Scheme 12 has a distinctive character for two reasons: It involves a diiron complex, which is rather uncommon [96], and it provides an example of isocyanide coupling taking place via C-N bond formation, which is rarely observed [62,95], with respect to the predominant C-C coupling mode.…”
Section: Cascade and Coupling Reactions Triggered By Nucleophilic Addmentioning
confidence: 99%
“…Similar hydride transfer was observed in the reaction of a μ 3 -methylidyne-μ 3 -ethyne complex with t -BuNC, which yielded a μ 3 -dimetalloallyl complex containing a tert -butylamino group . Formation of a μ-aminocarbyne ligand via hydride migration is often reported in the reaction of di- and trinuclear hydrido complexes with isocyanide …”
mentioning
confidence: 99%
“…We have previously prepared formimidoyl- and iminoacyl-bridged complexes related to compound 6 through insertion of isocyanides into unsaturated hydride- and alkyl-bridged complexes of the type [M 2 Cp 2 (μ-X)­(μ-PCy 2 )­(CO) 2 ] (M = Mo and W; X = H, Me). , In most cases, the coordination of the C , N -donor ligand in these compounds corresponds to the 5-electron donor μ-η 2 :η 2 mode ( A in Chart ), which in these cases allows the dimetal center to reach electronic saturation. The bridgehead carbon atom in this coordination mode is characterized by a relatively shielded 13 C NMR resonance around 60 ppm which displays a substantial P–C coupling of ca.…”
Section: Resultsmentioning
confidence: 91%