64222-63-5Relevant academic research and scientific papers
A Metal-Free Synthesis of N-Aryl Oxazolidin-2-Ones by the One-Pot Reaction of Carbon Dioxide with N-Aryl Aziridines
Sonzini, Paolo,Damiano, Caterina,Intrieri, Daniela,Manca, Gabriele,Gallo, Emma
, p. 2961 - 2969 (2020/07/06)
The cost-effective TPPH2/TBACl-catalyzed (TPPH2=dianion of tetraphenyl porphyrin; TBACl=tetrabutyl ammonium chloride) carbon dioxide cycloaddition to N-aryl aziridines was successful in synthesizing N-aryl oxazolidin-2-ones. A cataly
Thermal azide-Alkene cycloaddition reactions: straightforward multi-gram access to Δ2-1,2,3-Triazolines in deep eutectic solvents
Sebest, Filip,Casarrubios, Luis,Rzepa, Henry S.,White, Andrew J. P.,Díez-González, Silvia
, p. 4023 - 4035 (2018/09/11)
The multi-gram synthesis of a wide range of 1,2,3-Triazolines via azide-Alkene cycloaddition reactions in a Deep Eutectic Solvent (DES) is reported. The role of DES in this transformation as well as the origin of the full product distribution was studied with an experimental/computational-DFT approach.
The (porphyrin)ruthenium-catalyzed aziridination of olefins using aryl azides as nitrogen sources
Fantauzzi, Simone,Gallo, Emma,Caselli, Alessandro,Piangiolino, Cristiana,Ragaini, Fabio,Cenini, Sergio
, p. 6053 - 6059 (2008/09/17)
Aryl azides have been used as atom-efficient nitrene transfer reagents in the (porphyrin)ruthenium-catalyzed amination of olefins. Several azides, olefins and [Ru(porphyrin)CO] complexes were tested to investigate the scope and limits of the reaction. Quantitative yields and short reaction times were achieved by using terminal olefins and aryl azides bearing electron-withdrawing groups on the aryl moiety. The reactions were influenced by steric factors. Internally disubstituted olefins exhibited a lower reactivity and tri- and tetra-substituted olefins did not react at all. A very high turnover number (TON) for the [Ru(TPP)CO] (TPP = tetraphenylporphyrin dianion) catalyzed amination of α-methylstyrene by p-nitrophenyl azide was obtained. Wiley-VCH Verlag GmbH & Co. KGaA, 2007.
