Zobrazeno 1 - 7
of 7
pro vyhledávání: '"Emanuele Antico"'
Publikováno v:
JACS Au, Vol 1, Iss 6, Pp 742-749 (2021)
Externí odkaz:
https://doaj.org/article/668a24a7273440e7bd3e759c2caff7ec
Autor:
Emanuele Antico, Markus Leutzsch, Niklas Wessel, Thomas Weyhermüller, Christophe Werlé, Walter Leitner
Publikováno v:
Chemical science 14(1), 54-60 (2022). doi:10.1039/D2SC05959B
Chemical science 14(1), 54-60 (2022). doi:10.1039/D2SC05959B
Published by RSC, Cambridge
Published by RSC, Cambridge
Autor:
Emanuele Antico, Timo Repo, Jere Mannisto, Navod Angelo Amaratunga, Kathrin H. Hopmann, Aleksi Sahari, Cuong Dat Do
Publikováno v:
Chemical Communications. 58:3027-3030
We report a Ti(OiPr)4-mediated multicomponent reaction, which produces 3,4-substituted cis-d-lactones from alkyl magnesium chloride, benzaldehyde and CO2. The key intermediate, titanacyclopropane, is formed in situ from Ti(OiPr)4 and a Grignard reage
Autor:
Emanuele, Antico, Markus, Leutzsch, Niklas, Wessel, Thomas, Weyhermüller, Christophe, Werlé, Walter, Leitner
Publikováno v:
Chemical science. 14(1)
The development of earth-abundant catalysts for the selective conversion of silanes to silanols with water as an oxidant generating valuable hydrogen as the only by-product continues to be a challenge. Here, we demonstrate that [MnBr(CO)
Autor:
Stefano Zacchini, Guido Pampaloni, Emanuele Antico, Fabio Marchetti, Giulio Bresciani, Gianluca Ciancaleoni
Publikováno v:
ChemSusChem. 13:5586-5594
The development of sustainable synthetic routes to access valuable oxazolidinones via CO2 fixation is an active research area, and the aziridine/carbon dioxide coupling has aroused a considerable interest. This reaction is featured by a high activati
Autor:
Aleksi, Sahari, Cuong Dat, Do, Jere K, Mannisto, Emanuele, Antico, Angelo, Amaratunga, Kathrin H, Hopmann, Timo, Repo
Publikováno v:
Chemical communications (Cambridge, England). 58(18)
We report a Ti(OiPr)
Autor:
Giulio, Bresciani, Emanuele, Antico, Gianluca, Ciancaleoni, Stefano, Zacchini, Guido, Pampaloni, Fabio, Marchetti
Publikováno v:
ChemSusChem. 13(20)
The development of sustainable synthetic routes to access valuable oxazolidinones via CO