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1679-00-1

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1679-00-1 Usage

Structure

Cyclohexane derivative with two ethyl groups attached at the 1 and 4 positions

Industrial applications

a. Solvent
b. Production of plastics
c. Raw material in the synthesis of other organic compounds

Uses

a. Fragrance formulations
b. Manufacturing of pharmaceuticals

Physical properties

a. Colorless
b. Viscous liquid
c. Mild, sweet odor

Stability

Relatively stable under normal conditions

Toxicity

Not known to be highly toxic, but should be handled with caution

Safety measures

Proper safety measures should be followed during use and handling

Check Digit Verification of cas no

The CAS Registry Mumber 1679-00-1 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 1,6,7 and 9 respectively; the second part has 2 digits, 0 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 1679-00:
(6*1)+(5*6)+(4*7)+(3*9)+(2*0)+(1*0)=91
91 % 10 = 1
So 1679-00-1 is a valid CAS Registry Number.

1679-00-1Downstream Products

1679-00-1Relevant articles and documents

The solvent determines the product in the hydrogenation of aromatic ketones using unligated RhCl3as catalyst precursor

Bartling, Stephan,Chakrabortty, Soumyadeep,De Vries, Johannes G.,Kamer, Paul C. J.,Lund, Henrik,Müller, Bernd H.,Rockstroh, Nils

, p. 7608 - 7616 (2021/12/13)

Alkyl cyclohexanes were synthesized in high selectivity via a combined hydrogenation/hydrodeoxygenation of aromatic ketones using ligand-free RhCl3 as pre-catalyst in trifluoroethanol as solvent. The true catalyst consists of rhodium nanoparticles (Rh NPs), generated in situ during the reaction. A range of conjugated as well as non-conjugated aromatic ketones were directly hydrodeoxygenated to the corresponding saturated cyclohexane derivatives at relatively mild conditions. The solvent was found to be the determining factor to switch the selectivity of the ketone hydrogenation. Cyclohexyl alkyl-alcohols were the products using water as a solvent.

Catalytic Hydrogenation of Aromatic Hydrocarbons. Stereochemical Definition of the Catalytic Cycle for η3-C3H5Co(P(OCH3)3)3

Bleeke, J. R.,Muetterties, E. L.

, p. 556 - 564 (2007/10/02)

The η3-C3H5Co(P(OCH3)3)3-catalyzed hydrogenations with D2of a series of unsaturated organic molecules, including cyclohexenes, cyclohexadienes, and arenes, have been investigated.Complete cis stereoselectivity was observed in the addition of deuterium to the unsaturated ring systems.When alkyl-substituted arenes were reduced with D2, the hydrogen atoms in the alkyl chains underwent H-D exchange as long as each successive carbon atom in the chain possessed at least one hydrogen atom.Hence, extensive H-D exchange occured in n-alkyl side chains while the tert-butyl side chain was deuterium free.When alkyl-substituted arenes were hydrogenated in the presence of olefins such as 1-hexene, a variety of isomeric alkylcyclohexenes and alkenylcyclohexanes were observed.The relative concentrations of these isomeric species provided information about the relative stabilities of the (olefin)cobalt species in the catalytic cycle.Further mechanistic information was obtained from other competitive reactions, i.e., hydrogenation reactions involving equimolar quantities of two different unsaturated molecules.The proposed initiation steps of the catalytic cycle have been revised on the basis of a study of η3-C8H13Co(P(OCH3)3)3 as a catalyst precursor.The cyclooctenyl-cobalt bond was cleaved by hydrogen early in the reaction, leaving the highly coordinately unsaturated hydride, HCo(P(OCH3)3)2, which is probably the true catalytic species.

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