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(2-methoxyphenyl)phosphonic acid monoethyl ester is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

1219977-99-7

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1219977-99-7 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 1219977-99-7 includes 10 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 7 digits, 1,2,1,9,9,7 and 7 respectively; the second part has 2 digits, 9 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 1219977-99:
(9*1)+(8*2)+(7*1)+(6*9)+(5*9)+(4*7)+(3*7)+(2*9)+(1*9)=207
207 % 10 = 7
So 1219977-99-7 is a valid CAS Registry Number.

1219977-99-7Downstream Products

1219977-99-7Relevant academic research and scientific papers

Ruthenium-catalyzed C-H activation/cyclization for the synthesis of phosphaisocoumarins

Park, Youngchul,Jeon, Incheol,Shin, Seohyun,Min, Jiae,Lee, Phil Ho

, p. 10209 - 10220 (2013/11/06)

An efficient and cost-effective ruthenium-catalyzed oxidative cyclization of phosphonic acid monoesters or phosphinic acids with alkynes has been developed for the synthesis of a wide range of phosphaisocoumarins in good to excellent yields under aerobic conditions. A multitude of arylphosphonic acid monoesters and arylphosphinic acids having electron-donating and -withdrawing groups were oxidatively cyclized. Various diarylacetylenes, dialkylacetylenes, and alkylarylacetylenes effectively underwent the ruthenium-catalyzed oxidative cyclization. A substrate possessing benzoic acid as well as a phenylphosphonic monoester moiety was smoothly cyclized with hex-3-yne to afford a compound having both isocoumarin and phosphaisocoumarin moieties. Alkenylphosphonic monoester afforded phosphorus 2-pyrone through oxidative cyclization with alkyne. Competition experiments between diaryl- and dialkylalkynes and between diarylacetylenes having p-methoxy and p-chloro groups gave results which showed that the present oxidative cyclizations were not affected by the electronic effects of alkynes. Mechanistic studies revealed C-H bond metalation to be the rate-limiting step.

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