logo
ResearchBunny Logo
Two-photon-absorbing ruthenium complexes enable near infrared light-driven photocatalysis

Chemistry

Two-photon-absorbing ruthenium complexes enable near infrared light-driven photocatalysis

G. Han, G. Li, et al.

Discover groundbreaking research from Guanqun Han, Guodong Li, Jie Huang, Chuang Han, Claudia Turro, and Yujie Sun, exploring the exciting potential of near-infrared light-driven photocatalysis using ruthenium polypyridyl complexes. This innovative study unveils how these complexes facilitate organic transformations with unprecedented efficiency under 740 nm light irradiation.... show more
Abstract
One-photon-absorbing photosensitizers are commonly used in homogeneous photocatalysis which require the absorption of ultraviolet (UV)/visible light to populate the desired excited states with adequate energy and lifetime. Nevertheless, the limited penetration depth and competing absorption by organic substrates of UV/visible light calls upon exploring the utilization of longer-wavelength irradiation, such as near-infrared light (λirr > 700 nm). Despite being found applications in photodynamic therapy and bioimaging, two-photon absorption (TPA), the simultaneous absorption of two photons by one molecule, has been rarely explored in homogeneous photocatalysis. Herein, we report a group of ruthenium polypyridyl complexes possessing TPA capability that can drive a variety of organic transformations upon irradiation with 740 nm light. We demonstrate that these TPA ruthenium complexes can operate in an analogous manner as one-photon-absorbing photosensitizers for both energy-transfer and photoredox reactions, as well as function in concert with a transition metal co-catalyst for metallaphotoredox C-C coupling reactions.
Publisher
Nature Communications
Published On
Apr 28, 2022
Authors
Guanqun Han, Guodong Li, Jie Huang, Chuang Han, Claudia Turro, Yujie Sun
Tags
photocatalysis
near-infrared light
two-photon absorption
ruthenium complexes
organic transformations
energy transfer
C-C coupling
Listen, Learn & Level Up
Over 10,000 hours of research content in 25+ fields, available in 12+ languages.
No more digging through PDFs, just hit play and absorb the world's latest research in your language, on your time.
listen to research audio papers with researchbunny