Zobrazeno 1 - 5
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pro vyhledávání: '"Dominic R. Pye"'
Autor:
Roderick T. Stark, Dominic R. Pye, Wenyi Chen, Oliver J. Newton, Benjamin J. Deadman, Philip W. Miller, Jenny-Lee Panayides, Darren L. Riley, Klaus Hellgardt, King Kuok (Mimi) Hii
A synthetic route to an anti-cancer drug, lapatinib, was devised to support the development of a sustainable manufacturing process in South Africa. Quantitative metrics were employed to evaluate the sustainability of the key steps of the reaction.
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::bf9f055551c476d4e44a59076bcd63bd
http://hdl.handle.net/10044/1/99067
http://hdl.handle.net/10044/1/99067
Publikováno v:
Synthesis. 47:1761-1765
The reaction of 2-halobenzyl halides with the borate anion Li[(Ph)( t -Bu)Bpin] leads not only to the expected arylation at the benzyl position, but also to some Suzuki biaryl cross-coupling. Preliminary mechanistic investigations hint towards the in
Publikováno v:
Chemical Science
A bimetallic system consisting of Cu-carbene and Mn-carbonyl co-catalysts was employed for carbonylative C–C coupling of arylboronic esters with alkyl halides, allowing for the convergent synthesis of ketones.
A bimetallic system consisting of
A bimetallic system consisting of
Autor:
Robin B. Bedford, Damien Martin Murphy, Dominic R. Pye, Timothy Gallagher, Peter Brenner, Emma Carter
Publikováno v:
Organometallics. 33:5940-5943
Activation of B2pin2 with tBuLi facilitates the Fe-catalyzed borylation of alkyl, allyl, benzyl, and aryl halides via the formation of Li[B2pin2(tBu)] (1). The reaction of 1 with a representative iron phosphine precatalyst generates the unique iron(I
Autor:
Paul M. Cogswell, Peter Brenner, Damien Martin Murphy, Robin B. Bedford, Emily C. Neeve, Timothy Gallagher, Joshua Nunn, Emma Carter, Jeremy N. Harvey, Dominic R. Pye, Thomas W. Carvell
Publikováno v:
Chemistry (Weinheim an der Bergstrasse, Germany). 20(26)
While attractive, the iron-catalyzed coupling of arylboron reagents with alkyl halides typically requires expensive or synthetically challenging diphosphine ligands. Herein, we show that primary and secondary alkyl bromides and chlorides, as well as