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The chemical compound "(C5(CH3)5)2Zr{NC(H)C6H4CH3}2" is a type of organometallic compound, specifically a zirconium complex. It consists of a central zirconium atom (Zr) bonded to two cyclopentadienyl groups, each with five methyl groups (C5(CH3)5), and two ligands that are derived from aniline, where the hydrogen on the nitrogen is replaced by a cyclohexyl group (NC(H)C6H4CH3). (C5(CH3)5)2Zr{NC(H)C6H4CH3}2 is known for its stability and is often used in homogeneous catalysis, particularly in olefin polymerization processes. The structure provides a robust framework that can facilitate the formation of various polymers with controlled properties.

99707-16-1

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99707-16-1 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 99707-16-1 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 9,9,7,0 and 7 respectively; the second part has 2 digits, 1 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 99707-16:
(7*9)+(6*9)+(5*7)+(4*0)+(3*7)+(2*1)+(1*6)=181
181 % 10 = 1
So 99707-16-1 is a valid CAS Registry Number.

99707-16-1Downstream Products

99707-16-1Relevant academic research and scientific papers

Reactions of alkyl and hydride derivatives of permethylscandocene and -zirconocene with nitriles and amines. Catalytic hydrogenation of tert-butyl cyanide with permethylscandocene hydride

Bercaw, John E.,Davies, David L.,Wolczanski, Peter T.

, p. 443 - 450 (2008/10/08)

The compounds Cp*2ScR (Cp* = η5-C5Me5; R = H, Me, p-tol) react readily with nitriles R′CN to provide azomethine complexes Cp*2ScNC(R)R′ containing a C=N double bond (v(CN) 1640-1680 cm-1). If Cp*2ScMe is used, further reaction may occur to give products containing two nitriles. The related complex Cp*2ZrH2 will insert two nitriles in a stepwise manner; however, the dimethyl analogue is unreactive toward nitriles. The compounds Cp*2ScNC(H)R may be hydrogenated under relatively mild conditions to yield the corresponding amide complexes Cp*2ScNHCH2R. This transformation is reversible; addition of ethylene leads to dehydrogenation of the amide complex and production of ethane. The amide complexes may be independently synthesized by reaction of Cp*2ScR (R = H, Me) and the corresponding amine, with resultant elimination of hydrogen or methane, respectively. Cp*2ScNHCH2CMe3 will catalytically hydrogenate (4 atm of H2) Me3CCN to Me3CCH2NH2; however, termination occurs by insertion of the nitrile into the scandium-amide bond to form Cp*2ScNC (CMe3)NHCH2CMe3, the NC bond of which is not hydrogenated under these conditions. Labeling experiments show that hydrogen can add reversibly across the Sc-N bond of the amide, and this step is believed to play a crucial role in the catalytic reaction.

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