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[(1,2,3,4,5-η)-6,9,12,15,18-pentamethyl-1,6,9,12,15,18-hexahydro[60]fulleren-1-yl]carbonyl(triphenylphosphine)iridium is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

828247-46-7

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828247-46-7 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 828247-46-7 includes 9 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 6 digits, 8,2,8,2,4 and 7 respectively; the second part has 2 digits, 4 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 828247-46:
(8*8)+(7*2)+(6*8)+(5*2)+(4*4)+(3*7)+(2*4)+(1*6)=187
187 % 10 = 7
So 828247-46-7 is a valid CAS Registry Number.

828247-46-7Downstream Products

828247-46-7Relevant academic research and scientific papers

Synthesis and derivatization of iridium(I) and iridium(III) pentamethyl[60]fullerene complexes

Matsuo, Yutaka,Iwashita, Akihiko,Nakamura, Eiichi

, p. 89 - 95 (2005)

An iridium(I) pentamethyl[60]fullerene complex, Ir(η5-C 60Me5)(CO)2 (1), was prepared by the reaction of KC(C60Me5) with [IrCl(CO)2]2 in an acetonitrile/THF solution. Oxidation of the indium atom of 1 by I 2 successfully proceeded to afford an iridium(III) complex, Ir(η5C60Me5)I2(CO) (2), in 80% yield. Ligand exchange reactions of 1 took place to give phosphine complexes, Ir(η5-C60Me5)(CO)(PEt3) (3b) and Ir(η5-C60Me5)(CO)(PEt3) (3c), in 60% and 35% yields, respectively. Similarly, the Ir(I) phosphine complex Ir(η5-C60Me5)(CO)(PMe3) (3a) was also obtained by the reaction of 2 with PMe3 in 92% yield via reduction of the complex, while treatment of 2 with XylNC (Xyl = 2,6-dimethylphenyl isocyanide) gave another Ir(III) complex, Ir(η 5-C60Me5)I2(XylNC) (4), in 93% yield. MeMgBr and PhCCMgBr reacted with 2 to give alkyl and alkynyl complexes, Ir(η5-C60Me5)Me2(CO) (5) and Ir(η5-C60Me5)(CCPh)2(CO) (6), in 60% and 81% yields, respectively. The molecular structures of 1,2, and 3a were determined by X-ray crystallographic analysis. Cyclic voltammetric investigation of 1 and 2 revealed the electrochemical properties of the Ir(I) and Ir(III) complexes. Complex 1 showed three reversible one-electron-reduction waves in the cathodic scan, and one reversible two-electron-oxidation wave in the anodic scan, while the complex 2 exhibited two-electron reduction of the metal center and one-electron reduction of the fullerene part. The isolated diiodide complex 2 will be a useful starting material for the synthesis of various metal fullerene complexes.

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