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Octadec-9c-ene-1,12-diol is a long-chain organic compound with the molecular formula C18H36O2. It is a diol, meaning it contains two hydroxyl (-OH) groups, and it has a double bond in the 9th position of its 18-carbon chain. octadec-9c-ene-1,12-diol is also known as squalene, which is a naturally occurring hydrocarbon found in plants, animals, and humans. Squalene is an important intermediate in the synthesis of cholesterol, steroids, and other triterpenes. It is widely used in the pharmaceutical and cosmetic industries due to its moisturizing, antioxidant, and anti-inflammatory properties. Additionally, squalene is a key component in the production of squalane, a stable and highly effective skin moisturizer.

7706-07-2

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7706-07-2 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 7706-07-2 includes 7 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 4 digits, 7,7,0 and 6 respectively; the second part has 2 digits, 0 and 7 respectively.
Calculate Digit Verification of CAS Registry Number 7706-07:
(6*7)+(5*7)+(4*0)+(3*6)+(2*0)+(1*7)=102
102 % 10 = 2
So 7706-07-2 is a valid CAS Registry Number.

7706-07-2Upstream product

7706-07-2Downstream Products

7706-07-2Relevant academic research and scientific papers

Synthesis of cis-12,13-epoxy-cis-9-octadecenol and 12(13)-hydroxy-cis-9-octadecenol from vernonia oil using lithium aluminum hydride

Elhilo, Eisa B.,Anderson, Melissa A.,Ayorinde, Folahan O.

, p. 873 - 878 (2000)

Reduction of vernonia oil methyl esters (VOME) into epoxy fatty alcohol and diols was achieved with lithium aluminum hydride (LAH), under reflux and room temperature conditions, by using hexane and tetrahydrofuran (THF) as solvents. The reactions of VOME with LAH in hexane produced cis-12,13-epoxy-cis-9-octadecenol as a major product with an isolated yield of 73.62%, whereas the reactions with LAH in THF gave isomers of 12(13)-hydroxy-cis-9-octadecenol as the major products with an isolated yield of 95.1%. LAH was similarly reacted with vernonia oil (VO) to give the same products in lower yields, 1H nuclear magnetic resonance (NMR), 13C NMR, gas chromatography-mass spectrometry, and infrared were used to characterize these products. This study demonstrates the ability to control the reactivity of the epoxy functionality in VO or VOME with the choice of polar or nonpolar solvents, and extends the range of oleochemicals that can be derived from vernonia oil.

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