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α-Benzoyloxybenzylpyridinium tetrafluoroborate is a complex organic compound with the chemical formula C20H18BF4NO2. It is a derivative of benzylpyridinium, featuring a benzoyloxy group attached to the benzyl moiety. α-benzoyloxybenzylpyridinium tetrafluoroborate is known for its potential applications in organic synthesis and as a reagent in chemical reactions. It is characterized by its ability to act as a catalyst or a precursor in the formation of various chemical entities. The tetrafluoroborate anion (BF4-) provides the compound with unique electrophilic properties, which can be exploited in certain types of chemical transformations. Due to its complex structure and specific functional groups, α-benzoyloxybenzylpyridinium tetrafluoroborate is a subject of interest in the field of advanced organic chemistry.

20037-90-5

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20037-90-5 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 20037-90-5 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 2,0,0,3 and 7 respectively; the second part has 2 digits, 9 and 0 respectively.
Calculate Digit Verification of CAS Registry Number 20037-90:
(7*2)+(6*0)+(5*0)+(4*3)+(3*7)+(2*9)+(1*0)=65
65 % 10 = 5
So 20037-90-5 is a valid CAS Registry Number.

20037-90-5Downstream Products

20037-90-5Relevant academic research and scientific papers

Oxoammonium salt oxidations of alcohols in the presence of pyridine bases

Bobbitt, James M.,Bartelson, Ashley L.,Bailey, William F.,Hamlin, Trevor A.,Kelly, Christopher B.

, p. 1055 - 1067 (2014/03/21)

Oxoammonium salt oxidations (using 4-acetylamino-2,2,6,6- tetramethylpiperidine-1-oxoammonium tetrafluoroborate) of alcohols containing a β-oxygen atom in the presence of pyridine yield dimeric esters, while in the presence of 2,6-lutidine the product is a simple aldehyde. The formation of a betaine between pyridine and an aldehyde is presented to explain this disparity in reactivity. The betaine is oxidized by the oxoammonium salt to give an N-acylpyridinium ion that serves as an acylating agent for ester formation. Steric effects deter the formation of such a betaine with 2,6-disubstituted pyridines. A series of alcohols containing a β-oxygen substituent were oxidized to aldehydes in the presence of 2,6-lutidine, and a short study of the relative reactivity of various alcohols is given. An overall mechanism for oxoammonium cation oxidations is suggested, premised on nucleophilic additions to the oxygen atom of the positively charged nitrogen-oxygen double bond. Possible mechanisms for both dimeric oxidations and simple oxidations are given.

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