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(meso-tetraphenylporphyrinato)-chloro-pyridyl-chromium is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

65013-13-0

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65013-13-0 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 65013-13-0 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 6,5,0,1 and 3 respectively; the second part has 2 digits, 1 and 3 respectively.
Calculate Digit Verification of CAS Registry Number 65013-13:
(7*6)+(6*5)+(5*0)+(4*1)+(3*3)+(2*1)+(1*3)=90
90 % 10 = 0
So 65013-13-0 is a valid CAS Registry Number.

65013-13-0Relevant academic research and scientific papers

Femtosecond time-resolved photo-absorption studies on the excitation dynamics of chromium(III) porphyrin complexes in solution

Inamo, Masahiko,Okabe, Chie,Nakabayashi, Takakazu,Nishi, Nobuyuki,Hoshino, Mikio

, p. 167 - 172 (2007)

The electronic relaxation dynamics of the excited states of the chromium(III) tetraphenylporphyrin complexes, [Cr(TPP)(Cl)(L)] (L = H2O, pyridine, 1-methylimidazole), in toluene were studied by using femtosecond time-resolved absorption spectroscopy. The excited state (4T1) of 1-methylimidazole and pyridine complexes given by a very rapid intersystem crossing from 4S1 to 4T1 decays to establish the 4T1 ? 6T1 equilibrium in several hundred picoseconds. The 4T1 state of [Cr(TPP)(Cl)(H2O)] exhibits a biexponential decay composed of the photodissociation process of the axial H2O ligand and the decay of the photolyzed intermediate to the ground state of [Cr(TPP)(Cl)].

Dual application of (aqua)(chlorido)(porphyrinato)chromium(III) as hypersensitive amine-triggered on switch and for dioxygen activation

Heier, Philip,Boscher, Nicolas D.,Choquet, Patrick,Heinze, Katja

, p. 11086 - 11095 (2015/01/08)

Although synthesis and substitution reactions of chlorido chromium(III) porphyrins CrIII(TPP)(Cl)(L) (H2TPP = 5,10,15,20-tetraphenyl porphyrin, L = pyridine, H2O, ROH, etc.), have been well-established in coordination chem

Laser photolysis of chromium(III) porphyrins with axial pyridines in dichloromethane and toluene solutions. Novel effects of a hydrogen bond in the ligand exchange reaction

Inamo, Masahiko,Nakaba, Hideyuki,Nakajima, Kiyohiko,Hoshino, Mikio

, p. 4417 - 4423 (2008/10/08)

Laser photolysis studies were carded out for (chloro)(pyridine)(5,10,15,20-tetraphenylporphyrinato)chromium-(III), [Cr(TPP)(Cl)(Py)], in both dichloromethane and toluene containing water. The five-coordinate [Cr(TPP)(Cl)] produced by the photoinduced dissociation of pyridine from [Cr(TPP)(Cl)(Py)] initially reacts with H2O to give [Cr(TPP)(Cl)(H2O)], which eventually exchanges the axial H2O with Py to regenerate [Cr(TPP)(Cl)(Py)]. The rate for the ligand exchange of [Cr(TPP)(Cl)(H2O)] with exogenous Py is found to exhibit a bell-shaped pyridine-concentration dependence. Kinetic studies revealed that at a high Py concentration, the exogenous Py probably makes a hydrogen bond with the axial H2O of [Cr(TPP)(Cl)(H2O)] to yield [Cr(TPP)(Cl)(HO-H···Py)] as a dead-end complex. A similar structure of the Cr-TPP complex having 2-methylpyridine molecules bound to the coordinated H2O ligand by a hydrogen bond was determined by X-ray structure analysis. The exchange reaction of the axial HO-H···Py in [Cr(TPP)(Cl)(HO-H···Py)] by Py follows the dissociative mechanism: The first step is the dissociation of Py from [Cr(TPP)(Cl)(HO-H···Py)], and the second step is the dissociation of H2O. The five-coordinate [Cr(TPP)(Cl)] thus produced reacts with Py to regenerate [Cr(TPP)(Cl)(Py)]. The direct ligand exchange reaction of the axial HO-H···Py in [Cr(TPP)(Cl)(HO-H···Py)] with exogenous Py does not occur. Probably, the hydrogen bond, HO-H···Py, increases the basicity of H2O, and thus, the bond energy between Cr and O in [Cr(TPP)(Cl)(HO-H···Py)] becomes much stronger than that in [Cr(TPP)(Cl)(H2O)]. The mechanism of the ligand substitution reaction of the chromium(III) porphyrins has been examined in detail on the basis of the laser photolysis studies of [Cr(TPP)(Cl)(L)] (L = pyridine, 3-cyanopyridine, and H2O).

Reactivity of Five-Coordinate Intermediate Generated by Laser Photolysis of Monoligated Chloro(5,10,15,20-tetraphenylporphinato)chromium(III) in Toluene

Inamo, Masahiko,Hoshino, Mikio,Nakajima, Kiyohiko,Aizawa, Sen-ichi,Funahashi, Shigenobu

, p. 2293 - 2304 (2007/10/03)

The Cr(III) porphyrin complexes (1) and (2) (tpp represents the dianion of 5,10,15,20-tetraphenylporphine) crystallized from a chloroform-toluene mixture in the tetragonal space group I4, Z = 2, a = 13.559(5), b = 13.559(5), c = 9.770(3) Angstroem, V = 1796(3) Angstroem3, and from a dichloroethane-toluene mixture containing a small amount of pyridine (py) in the monoclinic space group P21/n, Z = 4, a = 14.655(5), b = 23.498(4), c = 13.152(2) Angstroem, β = 101.54(1) deg, V = 4437(2) Angstroem3, respectively.The axial Cr-O bond length for 1 and the axial Cr-N bond length for 2 are 2.239(3) and 2.140(5) Angstroem, respectively.Laser irradiation of the toluene solution of causes the photodissociation of the axial ligand L, where L represents H2O or 3-cyanopyridine, to give the five-coordinate intermediate .The rate constant of the axial ligand recombination reaction falls into a narrow range around 1x109 mol-1 kg s-1 at 25.0 deg C for both reactions.The activation parameters indicate the very high reactivity of the five-coordinate intermediate.The diffusion-controlled process is regarded as a rate-determining step for the recombination.

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