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(CO)3MnMn(CO)3(N(CH)(CH(CH3)2))2 is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

98858-62-9

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98858-62-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 98858-62-9 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 9,8,8,5 and 8 respectively; the second part has 2 digits, 6 and 2 respectively.
Calculate Digit Verification of CAS Registry Number 98858-62:
(7*9)+(6*8)+(5*8)+(4*5)+(3*8)+(2*6)+(1*2)=209
209 % 10 = 9
So 98858-62-9 is a valid CAS Registry Number.

98858-62-9Upstream product

98858-62-9Downstream Products

98858-62-9Relevant academic research and scientific papers

Metal to ligand charge-transfer photochemistry of metal-metal-bonded complexes. 8. Photochemistry of (CO)5MnMn(CO)3(α-diimine) complexes. Coupling reactions of the radicals formed and X-ray structure of the photoproduct (CO)4Mn(σ-N,σ-N′,η 2-CN-iPr-pyca)Mn(CO)3

Van Der Graaf, Tim,Stufkens, Derk J.,Oskam, Ad,Goubitz, Kees

, p. 599 - 608 (2008/10/08)

This article describes the photochemistry between 133 and 298 K of five metal-metal-bonded carbonyls (CO)5MnMn(CO)3(α-diimine) (1a-e) (α-diimine = 4,4′-dimethyl-2,2′-bipyridine (bpy′ (1a)), pyridine-2-carbaldehyde N-isopropylimine (iPr-pyca (1b)), 1,4-diisopropyl-1,4-diaza-1,3-butadiene (iPr-DAB (1c)), 1,4-di-p-tolyl-1,4-diaza-1,3-butadiene (pTol-DAB (1d)), 1,4-di-p-anisyl-1,4-diaza-1,3-butadiene (pAn-DAB (1e))) by irradiation into their metal to α-diimine charge-transfer (MLCT) band. At room temperature these complexes undergo homolysis of the metal-metal bond and the radicals formed dimerize to give Mn2(CO)10 and Mn2(CO)6(α-diimine)2 (2a-e). Of these dimers, 2d,e were thermally unstable at room temperature. They decomposed into their radicals, which were characterized with ESR in the case of 2d. Complexes 1b-e showed a side reaction at room temperature, giving rise to the formation of (CO)4Mn(σ-N,σ-N′,η 2-CN-iPr-pyca)Mn(CO)3 (3b) and (CO)3Mn(σ-N,σ-N′,η2-CN,η 2-C′N′-R-DAB) (4c-e), respectively. The crystal structure of 3b was determined, and the data are as follows: monoclinic, P21/a, with a = 15.425 (1) A?, b = 9.867 (1) A?, c = 12.988 (1) A?, β = 111.310 (9)°, and Z = 4; R = 0.041. Both Mn atoms possess a distorted octahedral geometry, and the Mn-Mn distance is shorter than that in Mn2(CO)10. The formation of these complexes 3b, 4c-e was quenched by radical scavengers and favored in viscous solvents such as paraffin. At lower temperatures, the quantum yields for the photoproduction of 2-4 decreased, and in the case of 1c, a novel complex, 5c, was formed at T ? 180 K by reaction of the Mn(CO)3(iPr-DAB) radicals. 5c was identified as Mn2(CO)4(σ-N,σ-N′,η 2-CN-iPr-DAB)2. Raising the temperature above 180 K caused a thermal conversion of 5c into Mn2(CO) 5(σ-N,σ-N′-iPr-DAB)(σ-N,σ-N′, η2-CN-iPr-DAB) (6c). A further increase of temperature above 200 K caused the formation of 2c out of 6c. At temperatures below 183 K, homolysis products were no longer formed, but instead the CO-loss complexes (CO)4Mn(μ-CO)Mn(CO)2(α-diimine) (7) were produced. The thermal and photochemical reactions of the CO-bridged complex 7a were studied. For both primary photoprocesses, homolysis and release of CO, the quantum yields were high and wavelength independent throughout the MLCT band. They are therefore proposed to occur from the same 3σbσ* state of the complex after intersystem crossing/internal conversion from the MLCT state(s). The relative quantum yields of homolysis and CO-loss reactions resemble the ones that were derived for Mn2(CO)10, which points to a similar mechanism for the photochemistry of both types of complexes.

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