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Organic chemistry. Nanomole-scale high-throughput chemistry for the synthesis of complex molecules

Authors :
Alexander, Buitrago Santanilla
Erik L, Regalado
Tony, Pereira
Michael, Shevlin
Kevin, Bateman
Louis-Charles, Campeau
Jonathan, Schneeweis
Simon, Berritt
Zhi-Cai, Shi
Philippe, Nantermet
Yong, Liu
Roy, Helmy
Christopher J, Welch
Petr, Vachal
Ian W, Davies
Tim, Cernak
Spencer D, Dreher
Source :
Science (New York, N.Y.). 347(6217)
Publication Year :
2015

Abstract

At the forefront of new synthetic endeavors, such as drug discovery or natural product synthesis, large quantities of material are rarely available and timelines are tight. A miniaturized automation platform enabling high-throughput experimentation for synthetic route scouting to identify conditions for preparative reaction scale-up would be a transformative advance. Because automated, miniaturized chemistry is difficult to carry out in the presence of solids or volatile organic solvents, most of the synthetic "toolkit" cannot be readily miniaturized. Using palladium-catalyzed cross-coupling reactions as a test case, we developed automation-friendly reactions to run in dimethyl sulfoxide at room temperature. This advance enabled us to couple the robotics used in biotechnology with emerging mass spectrometry-based high-throughput analysis techniques. More than 1500 chemistry experiments were carried out in less than a day, using as little as 0.02 milligrams of material per reaction.

Details

ISSN :
10959203
Volume :
347
Issue :
6217
Database :
OpenAIRE
Journal :
Science (New York, N.Y.)
Accession number :
edsair.pmid..........7a317f19719ddd791422174652ee0100