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4-ethyl-1,4-dimethyl-cyclohexene is a cyclic hydrocarbon compound with the molecular formula C11H20. It features a six-membered carbon ring structure, with two methyl groups (CH3) attached to the 1st and 4th carbon atoms, and an ethyl group (C2H5) attached to the 4th carbon atom as well. 4-ethyl-1,4-dimethyl-cyclohexene is an alkene, which means it contains a carbon-carbon double bond between the 1st and 2nd carbon atoms. Due to its cyclic structure and the presence of alkyl groups, 4-ethyl-1,4-dimethyl-cyclohexene exhibits unique chemical properties and reactivity, making it a valuable compound in various chemical and industrial applications.

1123-35-9

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1123-35-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1123-35-9 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 1,1,2 and 3 respectively; the second part has 2 digits, 3 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 1123-35:
(6*1)+(5*1)+(4*2)+(3*3)+(2*3)+(1*5)=39
39 % 10 = 9
So 1123-35-9 is a valid CAS Registry Number.

1123-35-9Downstream Products

1123-35-9Relevant academic research and scientific papers

Air-Stable α-Diimine Nickel Precatalysts for the Hydrogenation of Hindered, Unactivated Alkenes

Léonard, Nadia G.,Chirik, Paul J.

, p. 342 - 348 (2018)

Treatment of a mixture of air-stable nickel(II) bis(octanoate), Ni(O2CC7H15)2, and α-diimine ligand, iPrDI or CyADI (iPrDI = [2,6-iPr2-C6H3N=C(CH3)]2, CyADI = [C6H11N=C(CH3)]2) with pinacolborane (HBPin) generated a highly active catalyst for the hydrogenation of hindered, essentially unfunctionalized alkenes. A range of tri- and tetrasubstituted alkenes was hydrogenated and a benchtop procedure for the hydrogenation of 1-phenyl-1-cyclohexene on a multigram scale was demonstrated and represents an advance in catalyst activity and scope for the nickel-catalyzed hydrogenation of this challenging class of alkenes. Deuteration of 1,2-dimethylindene with the in situ-generated nickel catalyst with iPrDI exclusively furnished the 1,2-syn-d2-dimethylindane. With cyclic trisubstituted alkenes, such as 1-methyl-indene and methylcyclohexene, deuteration with the in situ generated nickel catalyst under 4 atm of D2 produced multiple deuterated isotopologues of the alkanes, signaling chain running processes that are competitive with productive hydrogenation. Stoichiometric studies, titration, and deuterium labeling experiments identified that the borane reagent served the dual role of reducing nickel(II) bis(carboxylate) to the previously reported nickel hydride dimer [(iPrDI)NiH]2 and increasing the observed hydrogenation activity. Performing the catalyst activation procedure with D2 gas and HBPin generated both HD and DBPin, establishing that the borane is involved in H2 activation as judged by 1H and 11B nuclear magnetic resonance spectroscopies.

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