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Low-energy photoredox catalysis
Nature Reviews ChemistryWith the advent of photoredox catalysis, new synthetic paradigms have been established with many novel transformations being achieved. Nevertheless, modern photoredox chemistry has several drawbacks, namely, deficiencies in reaction efficiency and scalability.
David C. Cabanero, Tomislav Rovis
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Photoredox Catalysis Is On A Roll
Chemical & Engineering News Archive, 2015The practice of using light to drive catalytic reactions is hotter than ever. The field of photoredox catalysis may trace its origins back to the late 1970s, but its popularity has grown considerably over the past five years. Most recently, David W. C.
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Generating carbyne equivalents with photoredox catalysis
Nature, 2018Carbon has the unique ability to bind four atoms and form stable tetravalent structures that are prevalent in nature. The lack of one or two valences leads to a set of species-carbocations, carbanions, radicals and carbenes-that is fundamental to our understanding of chemical reactivity.
Zhaofeng, Wang +3 more
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Allylsilane as a versatile handle in photoredox catalysis
Chemical CommunicationsThis review briefly summarizes the utilization of allylsilane in photoredox catalysis. It highlights the underlying mechanisms for the formation of the C–C/C–heteroatom bond with various functionalities in mild conditions with high selectivity.
Nand Lal +4 more
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Metallaphotoredox: The Merger of Photoredox and Transition Metal Catalysis
Chemical Reviews, 2022David Macmillan +2 more
exaly
Enamine Catalysis with Photoredox Catalysis
2012Z. -Y. Han, C. Wang, L. -Z. Gong
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Oxygen‐Tolerant Photoredox Catalysis Triggers Nitric Oxide Release for Antibacterial Applications
Angewandte Chemie - International Edition, 2022Jinming Hu, Shiyong Liu, Shiyan Xiao
exaly
Three‐Component Aminoarylation of Electron‐Rich Alkenes by Merging Photoredox with Nickel Catalysis
Angewandte Chemie - International Edition, 2021Armido Studer, Constantin G Daniliuc
exaly

