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Trifluoro-methanesulfonic acid 4-dimethoxymethyl-phenyl ester is a complex organic compound with the chemical formula C10H13F3O5S. It is an ester derivative of trifluoromethanesulfonic acid, featuring a 4-dimethoxymethyl-phenyl group attached to the acid. Trifluoro-methanesulfonic acid 4-dimethoxymethyl-phenyl ester is known for its reactivity and is used in various chemical synthesis processes, particularly in the formation of esters and other organic compounds. Its unique structure, with fluorine atoms attached to the methanesulfonic acid, enhances its electrophilic properties, making it a valuable reagent in organic chemistry. The compound's stability and reactivity are influenced by the electron-withdrawing nature of the trifluoromethyl group, which can affect the molecule's interactions with other chemicals in reactions.

86364-04-7

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86364-04-7 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 86364-04-7 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 8,6,3,6 and 4 respectively; the second part has 2 digits, 0 and 4 respectively.
Calculate Digit Verification of CAS Registry Number 86364-04:
(7*8)+(6*6)+(5*3)+(4*6)+(3*4)+(2*0)+(1*4)=147
147 % 10 = 7
So 86364-04-7 is a valid CAS Registry Number.

86364-04-7Relevant academic research and scientific papers

Reaction of Triflates with Potassium Diethyl Phosphite. Formation of Phosphate Esters

Creary, Xavier,Benage, Brigitte,Hilton, Kathryn

, p. 2887 - 2891 (1983)

Phenyl triflate and substituted analogues react with potassium diethyl phosphite in liquid ammonia to form aryl diethyl phosphate esters.The reaction formally involves loss of trifluoromethanesulfinate ion from the triflate and concomitant oxidation of phosphorus to the phosphate stage.Preliminary data suggest that, in a series of triflates, reactivity follows the order aryl > cyclohexenyl > cyclopropyl > alkyl.Studies on aryl triflates with added labeled phenoxide rule out a mechanism involving free phenoxide ion, i.e., displacement of phenoxide by nucleophilic attack of diethyl phosphite ion on sulfur followed by phosphorylation of displaced phenoxide.Three potential mechanisms, including one involving initial attack of phosphorus at sulfur, a biphilic insertion mechanism, and one involving nucleophilic attack on oxygen, are suggested, all of which could account for these observations.

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