Base-Metal Catalysis
Lingling Chu, Ming Joo Koh, Zhan Lu and Tatsuhiko Yoshino
Summary (AI generated)
In 2013, she joined Professor David McMillan's laboratory at Princeton as a postdoc to work on photoredox catalysis. In 2016, she started her independent career at Dona University, focusing on transmittal catalysis and radical chemistry. She is a member of the Early Career Advisory Board of Science of Sciences.
Today's lecture, titled "Ame Radical Multicomponent Cross Coupling Sphere N Catalysis," will be presented by Professor Z. Thank you to Professor Ishika for the introduction and to Professor Ya for the invitation. It is a great pleasure to participate in this webinar and share our recent research progress in ego catalyze the radical market component across couplings.
Radicals, also known as free radicals, are molecules with at least one unpaired electron. They are short-lived, highly active, and exhibit certain similarities to classic carbonyl intermediates. Radicals are versatile and useful synthetic intermediates in many important chemical transformations, including natural products and polymerization.