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Co2(CO)4(2,3-bis(diphenylphosphino)maleic anhydride)(μ-MeC.tplbond.CPh) is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

179921-71-2

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179921-71-2 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 179921-71-2 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 1,7,9,9,2 and 1 respectively; the second part has 2 digits, 7 and 1 respectively.
Calculate Digit Verification of CAS Registry Number 179921-71:
(8*1)+(7*7)+(6*9)+(5*9)+(4*2)+(3*1)+(2*7)+(1*1)=182
182 % 10 = 2
So 179921-71-2 is a valid CAS Registry Number.

179921-71-2Downstream Products

179921-71-2Relevant academic research and scientific papers

Regioselective phosphine attack on the coordinated alkyne in Co2( μ-alkyne) complexes reactivity studies and X-ray diffraction structures of Co2(CO)4(bma)(μ-HC≡CtBu) and the zwitterionic hydrocarbyl complexesn

Yang, Kaiyuan,Bott, Simon G.,Richmond, Michael G.

, p. 65 - 80 (2007/10/03)

The alkyne-bridged compounds Co2(CO)6( μ-R′C≡CR) (where R′ = H, R = Ph, 1Bu; R′ = Me, R = Ph) have been examined for their reactivity with the redox-active diphosphine ligand 2,3-bis(diphenylphosphino)maleic anhydride (bma). Thermal and Me3NO-induced activation of each Co2(CO)6( μ-R′C≡CR) compound initially furnishes the binuclear compounds Co2(CO)4(bma)( μ-R′C≡CR) (1c, R′ = H, R = Ph; 2c, R′ = H, R = 1Bu; 3c, R′ = Me, R = Ph), all of which are shown to possess a chelating bma ligand. These compounds exhibit a reversible chelate-to-bridge bma ligand isomerization that proceeds by a pathway involving dissociative CO loss. The stability of the chelating isomers is dependent on the steric bulk of the alkyne substituents, with the bridging isomer (1b, 2b, 3b) being favored at ambient temperature only in the case of Co2(CO)4(bma)( μ-HC≡C1Bu) (2b). Regioselective phosphine attack at the least-substituted alkyne carbon is observed at temperatures above 60 °C to afford the corresponding zwitterionic hydrocarbyl compounds Co2(CO)4[ μ-η2:η2:η1:η1-RC=C(R′)PPh2C=C(PPh2)C(O)OC(O)] (1z, 2z, 3z). Depending on the ease of separation, the new compounds have been characterized by IR and NMR spectroscopy, and the molecular structure of the bridged compound 2b and all three zwitterionic hydrocarbyl compounds have been determined by X-ray crystallography, 1z crystallizes in the triclinic space group P1: a = 9.8093(7) A, b = 12.215(1) A, c = 15.744(2) A, α = 98.251(8)°, β = 95.060(8)°, γ = 90.640(7)°, V = 1859.1(3) A3, Z = 2, dcalc = 1.426 g cm -3; R = 0.0365, Rw = 0.0469 for 2749 observed reflections. 2b crystallizes in the triclinic space group P1: a = 11.1272(7) A, b = 12.142(1) A, c = 13.565(1) A, α = 97.123(7)°, β = 94.951(6)°, γ = 100.197(6)°, V = 1778.8(2) A3, Z = 2, dcalc = 1.453 g cm-3; R = 0.0469, Rw = 0.0484 for 3357 observed reflections. 2z crystallizes in the monoclinic space group P21/n: a = 9.465(7) A, b = 20.071(8) A, c = 18.389(6) A, β = 98.88(5)°, V = 3452(3) A3, Z = 4, dcalc = 1.498 g cm-3; R = 0.0544, Rw = 0.0589 for 3114 observed reflections. 3z, as the CH2Cl2 solvate, crystallizes in the triclinic space group P1: a = 9.732(3) A, b = 12.286(2) A, c = 16.715(3) A, α = 98.39(1)°, β = 102.91(2)°, γ = 91.93(2)°, V = 1922.6(8) A3, Z = 2, dcalc = 1.550 g cm-3; R = 0.0730, Rw = 0.0825 for 2896 observed reflections. The X-ray data on 1z, 2z, and 3z confirm the site of phosphine attack on the coordinated alkyne ligand and the presence of the eight-electron hydrocarbyl ligand that accompanies this reaction. The redox properties of the zwitterionic compounds Co2(CO)4[ μ-η2:η2:η1:η1-RC=C(R′)PPh2C=C(PPh2)C(O)OC(O)] have been examined by cyclic voltammetry, and the data discussed relative to the coordination mode adopted by the bma ligand and the redox properties exhibited by the related alkyne-bridged compound Co2(CO)4(bma)( μ-PhC≡CPh) (chelating and bridging isomers). Extended Hueckel calculations on the model compound Co2(CO)4[ μ-η2:η2:η1:η1-HC=C(H)PH2C=C(PH2)C(O)OC(O)] have been carried out and are used in a discussion concerning the site of electron reduction and oxidation in 1z, 2z, and 3z.

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