| Literature DB >> 34734432 |
Yoshino Katsurayama1, Yasuhiro Ikabata2,3,4, Hajime Maeda1, Masahito Segi1, Hiromi Nakai2,5,6, Taniyuki Furuyama1,7.
Abstract
The high penetration of near-infrared (NIR) light makes it effective for use in selective reactions under light-shielded conditions, such as in sealed reactors and deep tissues. Herein, we report the development of phthalocyanine catalysts directly activated by NIR light to transform small organic molecules. The desired photocatalytic properties were achieved in the phthalocyanines by introducing the appropriate peripheral substituents and central metal. These phthalocyanine photocatalysts promote cross-dehydrogenative-coupling (CDC) under irradiation with 810 nm NIR light. The choice of solvent is important, and a mixture of a reaction-accelerating (pyridine) and -decelerating (methanol) solvents was particularly effective. Moreover, we demonstrate photoreactions under visible-light-shielded conditions through the transmission of NIR light. A combined experimental and computational mechanistic analysis revealed that this NIR reaction does not involve a photoredox-type mechanism with electron transfer, but instead a singlet-oxygen-mediated mechanism with energy transfer.Entities:
Keywords: NIR light; energy transfer; photocatalysis; phthalocyanine; transparency
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Year: 2021 PMID: 34734432 DOI: 10.1002/chem.202103223
Source DB: PubMed Journal: Chemistry ISSN: 0947-6539 Impact factor: 5.236