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Phosphonic acid, [2-(2-methylphenyl)-2-oxoethyl]-, diethyl ester is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

67257-38-9

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67257-38-9 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 67257-38-9 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 6,7,2,5 and 7 respectively; the second part has 2 digits, 3 and 8 respectively.
Calculate Digit Verification of CAS Registry Number 67257-38:
(7*6)+(6*7)+(5*2)+(4*5)+(3*7)+(2*3)+(1*8)=149
149 % 10 = 9
So 67257-38-9 is a valid CAS Registry Number.

67257-38-9Relevant academic research and scientific papers

SmI2-Catalyzed Intermolecular Coupling of Cyclopropyl Ketones and Alkynes: A Link between Ketone Conformation and Reactivity

Agasti, Soumitra,Beattie, Nicholas A.,McDouall, Joseph J. W.,Procter, David J.

supporting information, p. 3655 - 3661 (2021/04/07)

The archetypal single electron transfer reductant, samarium(II) diiodide (SmI2, Kagan's reagent), remains one of the most important reducing agents and mediators of radical chemistry after four decades of widespread use in synthesis. While the chemistry of SmI2 is very often unique, and thus the reagent is indispensable, it is almost invariably used in superstoichiometric amounts, thus raising issues of cost and waste. Of the few reports of the use of catalytic SmI2, all require the use of superstoichiometric amounts of a metal coreductant to regenerate Sm(II). Here, we describe a SmI2-catalyzed intermolecular radical coupling of aryl cyclopropyl ketones and alkynes. The process shows broad substrate scope and delivers a library of decorated cyclopentenes with loadings of SmI2 as low as 15 mol %. The radical relay strategy negates the need for a superstoichiometric coreductant and additives to regenerate SmI2. Crucially, our study uncovers an intriguing link between ketone conformation and efficient cross-coupling and thus provides an insight into the mechanism of radical relays involving SmI2. The study lays further groundwork for the future use of the classical reagent SmI2 in contemporary radical catalysis.

Bivalent copper complex containing diphosphine ortho-position carborane ligand, preparation method and application thereof

-

Paragraph 0029; 0033-0036; 0037, (2020/09/16)

The invention relates to a bivalent copper complex containing a diphosphine ortho-position carborane ligand, a preparation method and application thereof. The copper complex is prepared by the following method of: adding an n-BuLi solution dropwise into an ortho-position carborane o-C2B10H12 solution, and carrying out stirring reaction, then adding halogenated phosphine for continuous reaction, adding copper acetate Cu(OAc)2 into the reaction system for continuous reaction, after the reaction is finished, performing separating to obtain the diphosphine ortho-position carborane ligand, and applying the copper complex to catalytic synthesis of a beta-carbonyl phosphine oxide compound. Compared with the prior art, the synthesis process has excellent selectivity and high yield, the copper complex can catalyze alpha-haloketone and phosphite to react to synthesize the beta-carbonyl phosphine oxide compound under the room temperature condition, and the reaction is efficient, green and environmentally friendly.

Mukaiyama reagent-promoted metal-free preparation of alkynyl sulfones and phosphonates under mild conditions

Qi, Danyang,Dong, Wanrong,Peng, Zhihong,Zhang, Yingjun,An

, (2019/08/01)

An efficient and mild route for the formation sulfur or phosphor-substituted alkynes was herein demonstrated. The Mukaiyama reagent-mediated transformation started from easily-accessible substrates without carbon-carbon triple bonds, and the reaction proceeded under mild conditions (room temperature) in a one-pot manner, requiring for no transition metal-catalysts. The practical protocol featured for good functional groups tolerance (up to 41 examples) and high efficiency (up to 91% yields) towards alkynyl sulfones and alkynyl phosphonates at low cost.

Silver-Catalyzed Oxidative C(sp3)?P Bond Formation through C?C and P?H Bond Cleavage

Li, Lili,Huang, Wenbin,Chen, Lijin,Dong, Jiaxing,Ma, Xuebing,Peng, Yungui

supporting information, p. 10539 - 10544 (2017/08/22)

The silver-catalyzed oxidative C(sp3)?H/P?H cross-coupling of 1,3-dicarbonyl compounds with H-phosphonates, followed by a chemo- and regioselective C(sp3)?C(CO) bond-cleavage step, provided heavily functionalized β-ketophosphonates. This novel method based on a readily available reaction system exhibits wide scope, high functional-group tolerance, and exclusive selectivity.

Copper-Catalyzed Direct Oxyphosphorylation of Enamides with P(O)-H Compounds and Dioxygen

Liang, Wu,Zhang, Zhijie,Yi, Dong,Fu, Qiang,Chen, Suyuan,Yang, Lu,Du, Fengtian,Ji, Jianxin,Wei, Wei

supporting information, p. 1378 - 138 (2017/10/06)

A simple and convenient copper-catalyzed direct oxyphosphorylation of enamides with P(O)-H compounds and dioxygen has been developed under mild conditions. This methodology can allow the synthesis of a series of valuable β-ketophosphine oxides/β-ketophosphonates in moderate to good yields with a broad substrate scope simply by using readily-available starting materials.

Acetonitrile-dependent oxyphosphorylation: A mild one-pot synthesis of β-ketophosphonates from alkenyl acids or alkenes

Chen, Xi,Chen, Xiaolan,Li, Xu,Qu, Chen,Qu, Lingbo,Bi, Wenzhu,Sun, Kai,Zhao, Yufen

, p. 2439 - 2446 (2017/04/03)

An efficient one-pot synthesis of β-ketophosphonates has been developed, via the reaction of α,β-alkenyl carboxylic acids or alkenes with H-phosphonates and air oxygen, catalyzed by CuSO4·5H2O in CH3CN. CH3CN plays a decisive role, probably by forming an active oxygen complex [(MeCN)nCuII-O-O·].

β-Ketophosphonates formation via deesterification or deamidation of cinnamyl/alkynyl carboxylates or amides with H-phosphonates

Zhou, Yao,Zhou, Mingxin,Chen, Ming,Su, Jihu,Du, Jiangfeng,Song, Qiuling

, p. 103977 - 103981 (2015/12/24)

We report here an unprecedented Fe/Cu synergistically catalyzed deesterificative or deamidative oxyphosphorylation of unsaturated carboxylates or amides with H-phosphonates. The valuable β-ketophosphonates were obtained along with chemoselective cleavage of Csp2-C(CO) or Csp-C(CO) bonds in good yields under oxygen atmosphere with a wide substrate scope.

Base-induced one-pot preparation of N- or P-substituted alkynes

Zhang, Yang,Zhang, Yanqin,Xiao, Jing,Peng, Zhihong,Dong, Wanrong,An, Delie

supporting information, p. 7806 - 7815 (2015/12/31)

An efficient method for the formation of C(sp)-N or C(sp)-P bonds is described. The facile transformation proceeds under mild conditions (0 or -20 °C) in a one-pot manner, and does not require transition-metal catalysts. The base-induced protocol exhibits good functional group tolerance (up to 44 examples) and high efficiency (up to 94 % yield) towards rare heteroatom-substituted acetylenes (N or P). Furthermore, the proposed mechanism was supported by the isolation of a key intermediate. An efficient method for the formation of C(sp)-N or C(sp)-P bonds is described. The facile transformation proceeds in the absence of any transition-metal catalysts under mild conditions (0 or -20 °C) in a one-pot manner with good functional group compatibility and with high efficiency.

Cu/Fe-Cocatalyzed Formation of β-Ketophosphonates by a Domino Knoevenagel-Decarboxylation-Oxyphosphorylation Sequence from Aromatic Aldehydes and H-Phosphonates

Zhou, Mingxin,Zhou, Yao,Song, Qiuling

supporting information, p. 10654 - 10658 (2015/07/20)

A domino Knoevenagel-decarboxylation-alkene difunctionalization sequence has been developed for the conversion of benzaldehydes into β-ketophosphonates, catalyzed by a cooperative Cu/Fe system, whereby CP and CO bonds are formed simultaneously in a one-pot reaction. The reaction proceeds in good yields and with a broad substrate scope and environmentally benign conditions.

Copper/Iron-Catalyzed Aerobic Oxyphosphorylation of Terminal Alkynes Leading to β-Ketophosphonates

Yi, Niannian,Wang, Ruijia,Zou, Huaxu,He, Weibao,Fu, Wenqiang,He, Weimin

, p. 5023 - 5029 (2015/05/27)

A copper/iron-catalyzed oxyphosphorylation of alkynes with H-phosphonates through a radical process was developed. The present protocol provides an attractive approach to β-ketophosphonates in moderate to good yields, with the advantages of readily available substrate, high functional group tolerance and operation simplicity. (Chemical Equation Presented).

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