1238892-14-2Relevant academic research and scientific papers
Synthesis of 3-selanylbenzo[: B] furans promoted by SelectFluor
Andia Sandagorda, Eduardo Martarelo,Schumacher, Ricardo Frederico,Diem Ferreira Xavier, Maurício Carpe,Santos Neto, José Sebasti?o,Silva, Márcio Santos
, p. 13975 - 13983 (2020/04/23)
A simple and practical protocol for the synthesis of 3-selanyl-benzo[b]furans mediated by the SelectFluor reagent was developed. This novel methodology provided a greener alternative to generate 3-substituted-benzo[b]furans via a metal-free procedure unde
Selenium Radical Mediated Cascade Cyclization: Concise Synthesis of Selenated Benzofurans (Benzothiophenes)
An, Cui,Li, Chen-Yuan,Huang, Xiao-Bo,Gao, Wen-Xia,Zhou, Yun-Bing,Liu, Miao-Chang,Wu, Hua-Yue
supporting information, p. 6710 - 6714 (2019/09/09)
Presented in this work is a novel methodology for the synthesis of selenated benzofurans (or benzothiophenes) via AgNO2-catalyzed radical cyclization of 2-alkynylanisoles (or 2-alkynylthioanisoles), Se powder, and arylboronic acids. This method
Selenized benzofuran compound and synthesis method thereof
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Paragraph 0051-0059, (2019/11/12)
The invention relates to a selenized benzofuran compound and a synthesis method thereof. In an organic solvent, under an oxygen condition, a benzene selenium-based free radical is generated from boricacid and selenium powder under the action of a silver c
Method for synthesizing selenium-containing benzo[b]furan derivative by catalyzing 2-alkynylphenol derivative through copper in water phase under microwave radiation
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Paragraph 0027; 0028; 0030, (2018/07/28)
The invention discloses a method for synthesizing a selenium-containing benzo[b]furan derivative by catalyzing a 2-alkynylphenol derivative through copper in a water phase under microwave radiation. The method comprises the following steps of adding a catalyst CuCl2 with a catalytic amount, ligand 1, 10-phenanthroline (1,10-Phen), an auxiliary catalyst potassium hydroxide, the 2-alkynylphenol derivative, selenium powder, an iodinated aromatic hydrocarbon and pure water into a reaction vessel, placing into a microwave reaction instrument, reacting at certain temperature and power, after a certain time, carrying out vacuum concentration, and purifying a product through column chromatography. The method is a method for preparing the selenium-containing benzo[b]furan derivative, which is novelin raw material and simple and convenient to operate and is high-efficiency. Compared with the prior art, the method is obviously quickened in reaction speed relative to conventional heating, is mildin reaction condition, simple to operate, high in yield and low in cost, and is safe and environmentally friendly. (The formula is shown in the description.).
Copper-Iodide- and Diorganyl-Diselenide-Promoted Cyclization of 2-Alkynylphenols: Alternative Approach to 3-Organoselanylbenzo[b]furans
Kazmierczak, Jean C.,Recchi, Ana M. S.,Gritzenco, Fabiane,Balbom, Everton B.,Barcellos, Thiago,Speran?a, Adriane,Godoi, Benhur
, p. 6382 - 6389 (2017/12/01)
This paper describes an alternative method for the synthesis of 3-organoselanylbenzo[b]furans through the intramolecular cyclization of 2-alkynylphenols promoted by copper iodide and diorganyl diselenides. The cyclization reactions were carried out at roo
FeCl3-Diorganyl dichalcogenides promoted cyclization of 2-alkynylanisoles to 3-chalcogen benzo[ b ]furans
Gay, Rafaela M.,Manarin, Flavia,Schneider, Caroline C.,Barancelli, Daniela A.,Costa, Michael D.,Zeni, Gilson
supporting information; experimental part, p. 5701 - 5706 (2010/10/03)
A general synthesis of 3-chalcogen benzo[b]furans from the readily available 2-alkynylanisoles, via FeCl3/diorganyl dichalcogenides intramolecular cyclization, has been developed. Aryl and alkyl groups directly bonded to the chalcogen atom were used as cycling agents. The results revealed that the reaction significantly depends on the electronic effects of substituents in the aromatic ring bonded to the selenium atom of the diselenide species. We observed that the pathway of reaction was not sensitive to the nature of substituents in the aromatic ring of anisole since both the electron-donating and the electron-withdrawing groups delivered the products in similar yields. In addition, the obtained heterocycles were readily transformed to more complex products by using a chalcogen/lithium exchange reaction with n-BuLi followed by trapping of the lithium intermediate with aldehydes, furnishing the desired secondary alcohols in good yields.
