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Characterizing chain processes in visible light photoredox catalysis

Chemical Science · 2015 · Vol. 6(10) · pp. 5426–5434
Megan A. CismesiaTehshik P. Yoon

Abstract

The recognition that Ru(bpy)<sub>3</sub><sup>2+</sup> andsimilar visible light absorbing transition metal complexes can be photocatalysts for a variety of synthetically useful organic reactions has resulted in a recent resurgence of interest in photoredox catalysis. However, many of the critical mechanistic aspects of this class of reactions remain poorly understood. In particular, the degree to which visible light photoredox reactions involve radical chain processes has been a point of some disagreement that has not been subjected to systematic analysis. We have now performed quantum yield measurements to demonstrate that threerepresentative, mechanistically distinct photoredox processes involve product-forming chain reactions. Moreover, we show that the combination of quantum yield and luminescence quenching experiments provides a rapid method to estimate the length of these chains. Together, these measurements constitute a robust, operationally facile strategy for characterizing chain processes in a wide range of visible light photoredox reactions.

Radical Photochemical ReactionsCO2 Reduction Techniques and CatalystsCatalytic C–H Functionalization MethodsPhotoredox catalysisVisible spectrumQuantum yieldPhotochemistryQuenching (fluorescence)Chain reactionChemistryCatalysisPhotocatalysisYield (engineering)

Funding

  • Alfred P. Sloan Foundation
  • National Institutes of Health
Citations
1,038
FWCI
47.23
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70
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100%
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Cited by
Photocatalysis in Organic Synthesis – Past, Present, and Future
European Journal of Organic Chemistry · 2017 · 307 citations
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Chemical Reviews · 2016 · 6,022 citations
Visible‐Light Photocatalysis: Does It Make a Difference in Organic Synthesis?
Angewandte Chemie International Edition · 2018 · 2,097 citations
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