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Furan, 2-ethyl-5-phenyl- is a chemical with a specific purpose. Lookchem provides you with multiple data and supplier information of this chemical.

57044-49-2

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57044-49-2 Usage

Check Digit Verification of cas no

The CAS Registry Mumber 57044-49-2 includes 8 digits separated into 3 groups by hyphens. The first part of the number,starting from the left, has 5 digits, 5,7,0,4 and 4 respectively; the second part has 2 digits, 4 and 9 respectively.
Calculate Digit Verification of CAS Registry Number 57044-49:
(7*5)+(6*7)+(5*0)+(4*4)+(3*4)+(2*4)+(1*9)=122
122 % 10 = 2
So 57044-49-2 is a valid CAS Registry Number.

57044-49-2Downstream Products

57044-49-2Relevant academic research and scientific papers

Stereoselective Synthesis of cis-2-Ene-1,4-diones via Aerobic Oxidation of Substituted Furans Catalyzed by ABNO/HNO3

Yang, Liqun,Wang, Jingyang,Wang, Yue,Li, Xiaotong,Liu, Wei,Zhang, Zhaoguo,Xie, Xiaomin

, p. 14311 - 14320 (2021/10/25)

We report a highly efficient and selective catalytic system, ABNO (9-azabicyclo-[3.3.1]nonane N-oxyl)/HNO3, for the aerobic oxidation of substituted furans to cis-2-ene-1,4-diones under mild reaction conditions using oxygen as the oxidant. The catalyst system is amenable to various substituted (mon-, di-, and tri-) furans and tolerates diverse functional groups, including cyano, nitro, naphthyl, ketone, ester, heterocycle, and even formyl groups. Based on the control and 18O-labeling experiments, the possible mechanism of the oxidation is proposed.

Method for preparing furan compound from brominated arone

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Page/Page column 8, (2021/06/13)

The invention provides a method for synthesizing a furan compound by taking brominated arone and methyl ketone or cyclic ketone as raw materials and directly reacting under the action of tetraisopropyl titanate. The method comprises the following steps: under the protection of inert gas, stirring and heating a reaction mixture of methyl ketone or cyclic ketone and bromo-arone, and then adding tetraisopropyl titanate for reaction; and after the reaction is finished, separating and purifying the obtained reaction mixture to obtain the polysubstituted furan compound. The synthesis method provided by the invention has the advantages of easily available raw materials, low cost, simple operation and easy control, no solvent, good substrate universality and functional group compatibility, and is suitable for industrial mass production.

Chemoselective deoxygenation of ether-substituted alcohols and carbonyl compounds by B(C6F5)3-catalyzed reduction with (HMe2SiCH2)2

Yang, Wenyu,Gao, Lu,Lu, Ji,Song, Zhenlei

supporting information, p. 4834 - 4837 (2018/05/23)

B(C6F5)3-catalyzed deoxygenation of ether-substituted alcohols and carbonyl compounds has been developed using (HMe2SiCH2)2 as the reductant. This unique reagent shows distinct superiority over traditional one silicon-centered hydrosilanes, giving the corresponding alkanes in high yields with good tolerance of ethers, aryl halides and alkenes. The control experiments suggest that (HMe2SiCH2)2 might facilitate the approach in an intramolecular Si/O activation manner.

Ligand-Controlled Chemoselective C(acyl)-O Bond vs C(aryl)-C Bond Activation of Aromatic Esters in Nickel Catalyzed C(sp2)-C(sp3) Cross-Couplings

Chatupheeraphat, Adisak,Liao, Hsuan-Hung,Srimontree, Watchara,Guo, Lin,Minenkov, Yury,Poater, Albert,Cavallo, Luigi,Rueping, Magnus

supporting information, p. 3724 - 3735 (2018/03/21)

A ligand-controlled and site-selective nickel catalyzed Suzuki-Miyaura cross-coupling reaction with aromatic esters and alkyl organoboron reagents as coupling partners was developed. This methodology provides a facile route for C(sp2)-C(sp3) bond formation in a straightforward fashion by successful suppression of the undesired β-hydride elimination process. By simply switching the phosphorus ligand, the ester substrates are converted into the alkylated arenes and ketone products, respectively. The utility of this newly developed protocol was demonstrated by its wide substrate scope, broad functional group tolerance and application in the synthesis of key intermediates for the synthesis of bioactive compounds. DFT studies on the oxidative addition step helped rationalizing this intriguing reaction chemoselectivity: whereas nickel complexes with bidentate ligands favor the C(aryl)-C bond cleavage in the oxidative addition step leading to the alkylated product via a decarbonylative process, nickel complexes with monodentate phosphorus ligands favor activation of the C(acyl)-O bond, which later generates the ketone product.

Regioselective ring opening and isomerization reactions of 3,4-epoxyesters catalyzed by boron trifluoride

Izquierdo, Javier,Rodriguez, Santiago,Gonzalez, Florenci V.

, p. 3856 - 3859 (2011/09/19)

Efficient ring opening of 3,4-epoxyesters with alcohols to produce 4-alkoxy-3-hydroxyesters and their isomerization into 4-ketoesters using boron trifluoride as the catalyst are presented. Both transformations are simple and efficient methods for the synthesis of the above named synthetically useful compounds.

Mercuric triflate-catalyzed synthesis of 2-methylfurans from 1-alkyn-5-ones

Imagawa, Hiroshi,Kurisaki, Takahiro,Nishizawa, Mugio

, p. 3679 - 3681 (2007/10/03)

(Chemical Equation Presented) 2-Methylfurans were prepared by an effective cyclization of 1-alkyn-5-ones in the presence of mercuric triflate as the catalyst under very mild reaction conditions with high catalytic turnover up to 100 times. Benzene, toluen

A NOVEL PALLADIUM-CATALYZED REARRANGEMENT OF ACETYLENIC KETONES TO FURANS

Sheng, Huaiyu,Lin, Shouyuan,Huang, Yaozeng

, p. 4893 - 4894 (2007/10/02)

A novel rearrangement of 1-aryl-4-alkyl-2-butyn-1-one in the presence of Pd(dba)2-PPh3 catalyst gave 2,4-substituted furans in moderate yields.

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