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α-(2-Methylphenoxy)-desoxybenzoin is a complex organic compound with the chemical formula C16H14O3. It is a derivative of desoxybenzoin, which is a key intermediate in the synthesis of various pharmaceuticals and agrochemicals. α-(2-Methylphenoxy)-desoxybenzoin features a 2-methylphenoxy group attached to the α-position of the desoxybenzoin backbone, which consists of a benzene ring fused to a cyclohexanone ring. The presence of the 2-methylphenoxy group imparts unique properties to the molecule, making it valuable in various chemical reactions and applications. Due to its structural complexity and potential reactivity, α-(2-methylphenoxy)-desoxybenzoin is often used in advanced organic synthesis and as a precursor in the production of specialized chemicals.

14770-66-2

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14770-66-2 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 14770-66-2 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 1,4,7,7 and 0 respectively; the second part has 2 digits, 6 and 6 respectively.
Calculate Digit Verification of CAS Registry Number 14770-66:
(7*1)+(6*4)+(5*7)+(4*7)+(3*0)+(2*6)+(1*6)=112
112 % 10 = 2
So 14770-66-2 is a valid CAS Registry Number.

14770-66-2Downstream Products

14770-66-2Relevant academic research and scientific papers

The Reaction of Benzil with Grignard Reagents

Holm, T.

, p. 278 - 284 (2007/10/02)

Benzil reacts with Grignard reagents forming, in the first step, the 1,2-addition product (C-alkylation), but often also the 1,4-addition product (O-alkylation) and the reduction product, benzoin.The product distribution has been determined for mechanistic purposes for 16 Grignard reagents using a standard procedure.These results, and observations made using deuteriated reagents and the 5-hexenyl radical probe indicate an electron transfer (ET) mechanism for reagents having hydrogen in the β-position, while a polar mechanism is the most efficient for methyl, phenyl, benzyl and allyl Grignard reagents in the ether solution.For the ET mechanism, a six-centre transition state is suggested.Furthermore, a distinction is made between the primary cage product (O-alkyl) resulting from immediate combination of the radical pair, and the secondary cage product (C-alkyl) formed in the cage after rearrangement. 5-Hexenylmagnesium bromide yields uncyclised primary and secondary cage product, but also significant amounts of cyclised C-alkylation product formed by escape of the radicals from the cage and re-encounter after cyclisation of 5-hexenyl to cyclopentylmethyl.A recently suggested mechanism based on the existence of stable radical ion pairs is found to be unacceptable.

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