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Surface Modification of (001) Facets Dominated TiO2 with Ozone for Adsorption and Photocatalytic Degradation of Gaseous Toluene
JunBao
Author NameAffiliationE-mail
JunBao National%20Synchrotron%20Radiation%20Laboratory,University%20of%20Science%20&%20Technology%20of%20China baoj@ustc.edu.cn 
Abstract:
This study investigated the positive effect of surface modification with ozone on the photocatalytic performance of anatase TiO2 with dominated (001) facets for toluene degradation. The performance of photocatalyst was tested on a home-made VOCs degradation system. The ozone modification, toluene adsorption and degradation mechanism were established by a combination of various characterization methods, in situ DRIFTS and DFT calculation. The surface modification with ozone can significantly enhance the photocatalytic degradation performance for toluene. The abundant unsaturated coordinated 5c-Ti sites on (001) facets act as the adsorption sites for ozone. The formed Ti-O bonds reacted with H2O to generate a large amount of isolated Ti5c-OH, which act as the adsorption sites for toluene, and thus significantly increasing the adsorption capacity for toluene. The outstanding photocatalytic performance of ozone-modified TiO2 is due to its high adsorption ability for toluene and the abundant surface hydroxyl groups, which produce very reactive OH? radicals under irradiation. Furthermore, the O2 generated via ozone dissociation could combine with the photogenerated electrons to form superoxide radicals, which are also conductive to the toluene degradation.
Key words:  ozone modification, (001) facets, toluene degradation, TiO2, in situ DRIFTS
FundProject:
Surface Modification of (001) Facets Dominated TiO2 with Ozone for Adsorption and Photocatalytic Degradation of Gaseous Toluene
JBao
摘要:
This study investigated the positive effect of surface modification with ozone on the photocatalytic performance of anatase TiO2 with dominated (001) facets for toluene degradation. The performance of photocatalyst was tested on a home-made VOCs degradation system. The ozone modification, toluene adsorption and degradation mechanism were established by a combination of various characterization methods, in situ DRIFTS and DFT calculation. The surface modification with ozone can significantly enhance the photocatalytic degradation performance for toluene. The abundant unsaturated coordinated 5c-Ti sites on (001) facets act as the adsorption sites for ozone. The formed Ti-O bonds reacted with H2O to generate a large amount of isolated Ti5c-OH, which act as the adsorption sites for toluene, and thus significantly increasing the adsorption capacity for toluene. The outstanding photocatalytic performance of ozone-modified TiO2 is due to its high adsorption ability for toluene and the abundant surface hydroxyl groups, which produce very reactive OH? radicals under irradiation. Furthermore, the O2 generated via ozone dissociation could combine with the photogenerated electrons to form superoxide radicals, which are also conductive to the toluene degradation.
关键词:  ozone modification, (001) facets, toluene degradation, TiO2, in situ DRIFTS
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