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Visible‐Light Photocatalysis: Does It Make a Difference in Organic Synthesis?

Angewandte Chemie International Edition · 2018 · Vol. 57(32) · pp. 10034–10072
Leyre MarzoSantosh K. PagireOliver ReiserBurkhard König

Abstract

Visible-light photocatalysis has evolved over the last decade into a widely used method in organic synthesis. Photocatalytic variants have been reported for many important transformations, such as cross-coupling reactions, α-amino functionalizations, cycloadditions, ATRA reactions, or fluorinations. To help chemists select photocatalytic methods for their synthesis, we compare in this Review classical and photocatalytic procedures for selected classes of reactions and highlight their advantages and limitations. In many cases, the photocatalytic reactions proceed under milder reaction conditions, typically at room temperature, and stoichiometric reagents are replaced by simple oxidants or reductants, such as air, oxygen, or amines. Does visible-light photocatalysis make a difference in organic synthesis? The prospect of shuttling electrons back and forth to substrates and intermediates or to selectively transfer energy through a visible-light-absorbing photocatalyst holds the promise to improve current procedures in radical chemistry and to open up new avenues by accessing reactive species hitherto unknown, especially by merging photocatalysis with organo- or metal catalysis.

Radical Photochemical ReactionsSulfur-Based Synthesis TechniquesCatalytic C–H Functionalization MethodsPhotocatalysisReagentCatalysisOrganic synthesisPhotochemistryChemistryVisible spectrumCombinatorial chemistryNanotechnologyMaterials science

Funding

  • Alexander von Humboldt-Stiftung
  • Deutscher Akademischer Austauschdienst
  • Deutsche Forschungsgemeinschaft
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