2022
DOI: 10.1039/d2dt01491b
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The forgotten reagent of photoredox catalysis

Abstract: Visible light powers an ever-expanding suite of reactions to both make and break chemical bonds under otherwise mild conditions. As a reagent in photochemical synthesis, light is obviously critical for...

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Cited by 7 publications
(11 citation statements)
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References 105 publications
(132 reference statements)
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“…Reductive dehalogenation is a useful model for probing photoactivity, with affordable substrates requiring a wide range of reductive power to engage. 23 Quantitative conversion of the easiest to reduce substrates occurred within 8 h of irradiation with either catalyst, which was monitored using high performance liquid chromatography (Figures S2, S3). As the required energy increased, photoactivity with [Ir(ppy) 2 (phen)] + decreased, affording 62% conversion of 4-bromo-2-fluorobenzonitrile (1d, E p = −1.76 V vs SCE).…”
Section: ■ Results and Discussionmentioning
confidence: 99%
“…Reductive dehalogenation is a useful model for probing photoactivity, with affordable substrates requiring a wide range of reductive power to engage. 23 Quantitative conversion of the easiest to reduce substrates occurred within 8 h of irradiation with either catalyst, which was monitored using high performance liquid chromatography (Figures S2, S3). As the required energy increased, photoactivity with [Ir(ppy) 2 (phen)] + decreased, affording 62% conversion of 4-bromo-2-fluorobenzonitrile (1d, E p = −1.76 V vs SCE).…”
Section: ■ Results and Discussionmentioning
confidence: 99%
“…As we described briefly in the introduction part, several elegant papers have summarized the achievements of NIR photoredox catalysis in recent years. 5 Therefore, herein, we selectively present several representative examples of NIR photocatalysis. Based on the previous reports, 5 we classify NIR photoredox catalysis into three major categories: direct NIR photoredox catalysis, NIR photoredox catalysis through upconversion, and NIR photoredox catalysis through two-photon absorption.…”
Section: Nir Photoredox Catalysismentioning
confidence: 99%
“…4 To tackle these limitations, researchers turned their attention to long-wavelength red and NIR lights. 5 Both red light and NIR have characteristics of lower energy, fewer health risks, fewer side reactions, more abundance in sunlight, and most importantly, higher penetration depth through various media. Therefore, red light and NIR photocatalysis can serve as an alternative but milder option for the well-developed white/blue/green-light-mediated reactions.…”
Section: Introductionmentioning
confidence: 99%
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