Photo-Induced Radicals in Carbon Nitride and their Magnetic Signature

被引:15
|
作者
Actis, Arianna [1 ,2 ]
Fornasiero, Paolo [3 ,4 ]
Chiesa, Mario [1 ,2 ]
Salvadori, Enrico [1 ,2 ]
机构
[1] Univ Torino, Dept Chem, Via Pietro Giuria 7, I-10125 Turin, Italy
[2] Univ Torino, NIS Ctr, Via Pietro Giuria 7, I-10125 Turin, Italy
[3] Univ Trieste, Dept Chem & Pharmaceut, INSTM UdR, Via Licio Giorgieri 1, I-34127 Trieste, Italy
[4] CNR, URT Trieste, ICCOM, Via Licio Giorgieri 1, I-34127 Trieste, Italy
关键词
Carbon nitride; semiconductors; EPR spectroscopy; radicals; photochemistry; ELECTRON-PARAMAGNETIC-RESONANCE; HYDROGEN EVOLUTION; SPIN-RESONANCE; EPR INVESTIGATIONS; SPECTROSCOPY; PHOTOCATALYSTS; DEPENDENCE; CATALYSTS; POLYMERS; DEFECTS;
D O I
10.1002/cptc.202300203
中图分类号
O64 [物理化学(理论化学)、化学物理学];
学科分类号
070304 ; 081704 ;
摘要
As a metal-free semiconductor, carbon nitride is a promising material for sustainable photocatalysis. From the large number of studies, it seems apparent that the photocatalytic activity is related to the number and type of defects present in the structure. Many defects are paramagnetic and photoresponsive and, for these reasons, Electron Paramagnetic Resonance (EPR) spectroscopy is a powerful method to derive fundamental information on the structure - local, extended and electronic - of such defects which in turn impact the optical, magnetic and chemical properties of a material. This review aims at critically discussing the interpretation of EPR data of native and photoinduced radical defects in carbon nitride research highlighting strengths and limitations of this spectroscopic technique. The employment of carbon nitride as a photocatalyst is conditional to understanding its response to light and the nature of all the photogenerated species. Amongst the characterisation techniques, EPR spectroscopy occupies a central role since it permits to detect paramagnetic states and follow their fate. Here we aim to provide guidelines to employ EPR spectroscopy in the research on carbon nitride. image
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页数:12
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