2022
DOI: 10.1002/ange.202202914
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Copper‐Bridged Tetrakis(4‐ethynylphenyl)ethene Aggregates with Photo‐Regulated 1O2 and O2.− Generation for Selective Photocatalytic Aerobic Oxidation

Abstract: Active species regulation is a key scientific issue that essentially determines the selectivity and activity of a photocatalyst. Herein, CuI‐bridged tetrakis(4‐ethynylphenyl)ethene aggregates (T4EPE‐Cu) with photo‐regulated 1O2 and O2.− generation were demonstrated for selective photocatalytic aerobic oxidation. In this system, transient photovoltage combined with the density functional theory calculations confirmed that Cu‐alkynyl was the main oxygen activation site. The adsorbed O2 tends to produce O2.− beca… Show more

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“…Notably, the h + generated in the VB can cleave water molecules, producing highly oxidizing •OH species [82]. Simultaneously, the e − can be captured by oxygen molecules and gathered in the CB to generate •O 2 − , and more ROS can be generated as shown in Equations ( 1)-( 4) [83,84]. The photocatalytic degradation process involves physical-chemical reactions on the surface of photocatalysts [85].…”
Section: Photocatalytic Degradation Of Actmentioning
confidence: 99%
“…Notably, the h + generated in the VB can cleave water molecules, producing highly oxidizing •OH species [82]. Simultaneously, the e − can be captured by oxygen molecules and gathered in the CB to generate •O 2 − , and more ROS can be generated as shown in Equations ( 1)-( 4) [83,84]. The photocatalytic degradation process involves physical-chemical reactions on the surface of photocatalysts [85].…”
Section: Photocatalytic Degradation Of Actmentioning
confidence: 99%