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The complex **[MeSi(SiMe2N(4-CH3C6H4))3]Zr-Ru(CO)2(Cp)** is a heterobimetallic early-late transition metal complex featuring an unsupported Zr-Ru bond, stabilized by a tripodal tris(amido)silane ligand. It exhibits thermal stability in both solid and solution states and reacts with isocyanides to form metallaiminoacyl complexes via insertion into the polar Zr-Ru bond. Additionally, it undergoes oxygen transfer reactions with sulfoxides, converting a carbonyl ligand into a bridging CO2 unit while coordinating the resulting thioether to the Ru center. This reactivity highlights the polar nature of the Zr-Ru bond and its utility in small-molecule activation. **Other names for the complex may include:** - [MeSi{SiMe2N(p-tolyl)}3Zr-Ru(CO)2(Cp)] - Zirconium-ruthenium heterobimetallic complex with a tris(amido)silane ligand - Unsupported Zr-Ru bonded complex with Cp and carbonyl ligands.

175915-53-4

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175915-53-4 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 175915-53-4 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,7,5,9,1 and 5 respectively; the second part has 2 digits, 5 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 175915-53:
(8*1)+(7*7)+(6*5)+(5*9)+(4*1)+(3*5)+(2*5)+(1*3)=164
164 % 10 = 4
So 175915-53-4 is a valid CAS Registry Number.

175915-53-4Downstream Products

175915-53-4Relevant academic research and scientific papers

A 'passe-partout' for the stabilization of highly polar unsupported M-M′ bonds (M = Ti, Zr, Hf; M′ = Fe, Ru) and α-addition of the metal nucleophile-electrophile pairs to an isocyanide

Findeis, Bernd,Schubart, Martin,Platzek, Christina,Gade, Lutz H.,Scowen, Ian,McPartlin, Mary

, p. 219 - 220 (1996)

The coordination of a novel type of tripodal amido ligand provides the key to the synthesis of stable M-M′ (M = Ti, Zr, Hf; M′ = Fe, Ru) heterobimetallic complexes, [MeSi{SiMe2N(C6H4Me-4)} 3M-M′(η5-C5H5)(CO) 2] 4-9, with unsupported metal-metal bonds and thus enables systematic studies of these complexes; the crystal structures of the Ti-Fe (4) and Zr-Fe (6) complexes are reported, the latter being the first X-ray structure of a compound containing a Zr-Fe bond; reaction of the M-M′ complexes with methyl isocyanide leads to the immediate insertion into the metal-metal bond, a reaction which is analogous to α-additions to isocyanides.

Synthesis and reactivity of early-late heterodinuclear complexes stabilized by a trisilylsilane-based tripodal amido ligand

Gade, Lutz H.

, p. 5282 - 5294 (1999)

The reaction of the complexes [MeSi{SiMe2N(R)}3MX] (R = p-tolyl, 2-FC6H4; M = Ti, Zr, Hf; X = Cl, Br) with K[CpM′(CO)2] afforded the metal-metal bonded heterodinuclear complexes [MeSi{SiMe2N(R)}3MM′(CO)2Cp] (M = Ti, Zr, Hf; M′ = Fe, Ru; R = p-tolyl, 2-C6H4), all of which are thermally stable in the solid state and in solution. X-ray crystal structure analyses of the complexes [MeSi{SiMe2N(p-tol)}3M-M′(CO)2Cp] (M, M′: Ti, Fe (3); Ti, Ru (4); Zr, Fe (5)) and [MeSi{SiMe2N(2-FC6H4)} 3Ti-Fe(CO)2Cp] (9) established the presence of unsupported metal-metal bonds [3, Ti-Fe 2.460(1); 4, Ti-Ru 2.5609(8); 5, Zr-Fe 2.605(2); 9, Ti-Fe 2.433(4) ?]. Reaction of the dinuclear complexes with isonitriles led to insertion of the substrate into the polar metal-metal bond and the formation of the metallaiminoacyl complexes [MeSi{SiMe2N(R)}3M{η 2-(C=NR′)M′(CO)2Cp}] (M = Ti, Zr, Hf; M′ = Fe, Ru; R = p-tolyl, Z-C6H4; R′ = Me, p-tolyl). The 13C NMR resonances of the isonitrile-derived carbon nuclei linking the two metal centers are observed at remarkably low field (δ 267.8-303.8). The structural proposal for the insertion products was confirmed by an X-ray crystallographic study of [MeSi{SiMe2N(p-tol)}3Ti{η 2-(C=NMe)Ru(CO)2Cp]. When the heterobimetallic complex [MeSi-{SiMe2N(p-tol)}3Zr-Ru(CO)2Cp] was reacted with sulfoxides [Me2SO, Me(Ph)SO, (PhCH2)2SO, (CH2)4SO], immediate oxygen transfer to a carbonyl ligand occurred, generating the dinuclear complexes [MeSi(SiMe2-NTol)3Zr(μ-O 2C)RuCp(CO){S(R)R′}] (R = R′ = Me (23a); R′ = Me, R′ = Ph (23b); R, R′ = (CH2)4 (23c); R, R′ = PhCH2 (23d)), in which the two metal centers are linked by a CO2 ligand derived from a carbonyl ligand in the starting material. In the presence of a second equivalent of sulfoxide, the Lewis acid-base adducts [MeSi(SiMe2NTol)3Zr{OS(R)R′-κO}(μ-O 2C)RuCp(CO){S(R)R′}] (R = R′ = Me (24a); R = Me, R′ = Ph (24b); R, R′ = (CH2)4 (24c)) were formed. An X-ray crystal structure analysis of 24a established the conversion of the carbonyl ligand to the bridging matallacarboxylate unit and the coordination of the thioether, formed in the oxygen transfer, to the Ru atom. The oxygen transfer from the sulfoxide to a carbonyl ligand was confirmed by an NMR study of the reaction using 13C-labeled carbonyl derivatives and 17O-labeled Me(Ph)SO.

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