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2,2,5,5,10,10-hexamethyldodecane is an organic compound with the molecular formula C18H38. It is a branched alkane, characterized by its six methyl groups attached to the central dodecane chain. This structure results in a highly symmetrical and compact molecule, which contributes to its unique physical and chemical properties. The compound is known for its low polarity and high thermal stability, making it suitable for various industrial applications, such as a lubricant or a component in high-performance fuels. Its resistance to chemical reactions and low reactivity also make it a valuable substance in chemical research and development.

89891-15-6

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89891-15-6 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 89891-15-6 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 8,9,8,9 and 1 respectively; the second part has 2 digits, 1 and 5 respectively.
Calculate Digit Verification of CAS Registry Number 89891-15:
(7*8)+(6*9)+(5*8)+(4*9)+(3*1)+(2*1)+(1*5)=196
196 % 10 = 6
So 89891-15-6 is a valid CAS Registry Number.

89891-15-6Downstream Products

89891-15-6Relevant academic research and scientific papers

Reactions of tert-Butyllithium with α,ω-Dihaloalkanes. Evidence for Single-Electron-Transfer-Mediated Metal-Halogen Interchange Involving Alkyl Radical-Halide Ion Adducts

Bailey, William F.,Gagnier, Paul R.,Patricia, Jeffrey J.

, p. 2098 - 2107 (2007/10/02)

The reactions of tert-butyllithium (t-BuLi) with primary α-iodo-ω-haloalkanes and α,ω-dibromoalkanes have been investigated in experiments conducted at -23 deg C in n-pentane-diethyl ether (3:2 by volume) solution.It has been found that production of an α-lithio-ω-haloalkane (1) by metal-halogen interchange at one end of a 1,3-, 1,4-, or 1,5-dihalide results in intramolecular coupling to give cycloalkanes in high yield.As the chain length of the dihalide is increased beyond five carbon atoms the production of an α,ω-dilithio species by interchange at bothends of the dihalide ceases to be excluded by cyclization of 1 and a precipitous drop in the yield of cycloalkane was found to occur in reactions of 1,6-diiodoalkanes with t-BuLi.Metal-halogen interchange was the exclusive process observed in reactions of α,ω-dihalides with t-BuLi provided at least one halogen of the substrate was an iodine.By contrast, similar treatment of α,ω-dibromoalkane provided only minor amounts of product attributable to metal-halogen interchange.Under conditions that provide an essentially quantitative yield of carboxylic product from reductive cyclization of 1 generated from 1,5-diiodo-3,3-dimethylpentane, the corresponding 1,5-dibromide was converted to a mixture composed of cycloalkane, products from Wurtz-type coupling with t-BuLi, and quantities of parent alkane from formal reduction of the dihalide.The mechanism of the metal-halogen interchange was further probed by using 6-halo-1-hexene substrates.Observation of cyclized product from the reaction of t-BuLi with 6-bromo- and 6-iodo-1-hexene demonstrated that the interchange between t-BuLi and primary alkyl bromides and iodides occurs predominantly via single-electron-tranfer (SET) process.Incorporation of alkyl radical-halide ion adducts with halogen dependent lifetimes as intermediates following SET from alkyllithium to alkyl halide serves to explain the disparate behavior of alkyl bromides and iodides when treated with t-BuLi.A unifield SET-mediated mechanism for metal-halogen interchange and Wurtz coupling is presented.

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