59305-49-6Relevant academic research and scientific papers
Unusual Application for Phosphonium Salts and Phosphoranes: Synthesis of Chalcogenides
Moura, Igor M. R.,Tranquilino, Arisson,Sátiro, Barbara G.,Silva, Ricardo O.,De Oliveira-Silva, Diogo,Oliveira, Roberta A.,Menezes, Paulo H.
, p. 5954 - 5964 (2021/05/04)
A novel strategy for the synthesis of sulfides and selenides from phosphonium salts and thio- or selenesulfonates, commercially available compounds, is described. When phosphoranes were used in the reaction, different products were obtained. The methodology does not require the use of metals, reactive species, or anhydrous conditions to be performed.
Employment of palladium pincer-complexes in phenylselenylation of organohalides
Wallner, Olov A.,Szabo, Kalman J.
, p. 9215 - 9221 (2007/10/03)
Palladium pincer-complex-catalyzed selenylation of propargyl-, allyl-, benzyl-, and benzoyl halides could be achieved under mild reaction conditions employing trimethylstannylphenylselenide as selenylating agent. This reaction has a high functional group
Indium(I) iodide-promoted cleavage of diaryl diselenides and disulfides and subsequent condensation with alkyl or acyl halides. One-pot efficient synthesis of diorganyl selenides, sulfides, selenoesters, and thioesters
Ranu, Brindaban C.,Mandal, Tanmay
, p. 5793 - 5795 (2007/10/03)
Diphenyl diselenides and disulfides undergo facile cleavages by indium(I) iodide and the corresponding generated selenate and thiolate anions condense in situ with alkyl or acyl halides present in the reaction mixture. Thus, a simple, efficient, and general procedure has been developed for the synthesis of unsymmetrical diorganyl selenides, sulfides (thioethers), selenoesters, and thioesters by this one-pot reaction at room temperature.
Flash Pyrolysis of Selenides. Syntheses of Bibenzyls, Olefins, and Related Compounds
Higuchi, Hiroyuki,Otsubo, Tetsuo,Ogura, Fumio,Yamaguchi, Hachiro,Sakata, Yoshiteru,Misumi, Soichi
, p. 182 - 187 (2007/10/02)
Pyrolyses of a series of selenides and diselenides were studied. Selenides and diselenides bound with an active methylene group like benzyl gave a variety of substituted bibenzyls and related ethane derivatives in high yields. Other diselenides were easily caused to cleave to give various aromatic and aliphatic olefins in good yields together with elemental selenium. Lepidopterene, paracyclophane, and benzocyclobutene were prepared by thermal cleavage of their corresponding phenylselenomethyl-substituted compounds as an application of the pyrolysis concerned.
