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[Mn(CO)2(C5H5N)(C5H4CH2COC6H5)] is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

1345258-03-8

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1345258-03-8 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1345258-03-8 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,3,4,5,2,5 and 8 respectively; the second part has 2 digits, 0 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 1345258-03:
(9*1)+(8*3)+(7*4)+(6*5)+(5*2)+(4*5)+(3*8)+(2*0)+(1*3)=148
148 % 10 = 8
So 1345258-03-8 is a valid CAS Registry Number.

1345258-03-8Downstream Products

1345258-03-8Relevant academic research and scientific papers

Engineering femtosecond organometallic chemistry: Photochemistry and dynamics of ultrafast chelation of cyclopentadienylmanganese tricarbonyl derivatives with pendant benzenecarbonyl and pyridinecarbonyl groups

Heilweil, Edwin J.,Johnson, Jermaine O.,Mosley, Karen L.,Lubet, Philippe P.,Webster, Charles Edwin,Burkey, Theodore J.

, p. 5611 - 5619 (2012/01/04)

The chelation following photodissociation of CO for cyclopentadienyl manganese tricarbonyl derivatives with a bifunctional side chain has been investigated. Previous studies show that steady-state irradiation of 1 (Mn{μ5-C5H4CH2COR}-(CO) 3, R = 2-pyridyl) leads to CO dissociation and formation of O-chelate 2 with smaller amounts of N-chelate 3. Subsequently, 2 rearranges thermally to 3. A new preparation for 1 is reported, while analogues 4 (R = phenyl) and 5 (R = 4-pyridyl) are prepared for the first time. Steady-state UV-vis, FTIR, and NMR studies of 4 and 5 in heptane demonstrate that O-chelates 6 and 7, respectively, are formed with the side-chain oxygen but decay on the minute time scale. The linkage isomerization of O-chelate 2 to 3 is faster than the decay observed for the O-chelate 6 (R = 2-pyridyl versus Ph), even in the presence of 0.1 M pyridine for the latter. Following irradiation of 4 during time-resolved infrared studies in heptane, ultrafast O-chelation is observed but not ultrafast solvent coordination. Ultrafast O-chelation is also observed for 5 along with an unidentified transient. Following irradiation of 1, ultrafast O-and N-chelation are observed, to the exclusion of ultrafast solvent coordination. This result suggests that chelate formation is a subpicosecond process and that both chelates are formed independently. A split in the otherwise degenerate stretching band s for 4 and 5 in FTIR spectra suggests that there is significant electronic communication between the side chain and the metal carbonyl groups. The results suggest that ultrafast chelation is favored by side-chain conformations that position a functional group near the metal center.

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