首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Alterations in the surface features of S-doped carbon and g-C3N4 photocatalysts in the presence of CO2 and water upon visible light exposure
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Alterations in the surface features of S-doped carbon and g-C3N4 photocatalysts in the presence of CO2 and water upon visible light exposure

机译:在可见光暴露时,S掺杂碳和G-C3N4光催化剂的表面特征的改变和G-C3N4光催化剂

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摘要

Graphitic carbon nitride and S-doped carbon catalysts were exposed to CO2 and/or water either in the dark or under visible light irradiation. The surface chemistry of the initial and exposed samples was studied by XPS and potentiometric titration. In the case of porous carbon catalysts the changes in porosity were also estimated based on the adsorption of nitrogen. The results showed that exposure to water and CO2O2 caused changes in its surface chemistry. The changes were especially pronounced when the surfaces were exposed to CO2 under visible light irradiation. Mainly, oxidation of surface carbon atoms was observed, which was accompanied by the reduction of surface nitrogen in the case of g-C3N4, and removal of some sulfur species in the case of S-doped carbons. These changes were the consequence of photosensitivity and the oxidation of water and reduction of CO2. Moreover, the chemical reactivity of water and CO2 was also noticed in the dark, which was linked to hydrolysis and redox reactions, respectively. The changes in the chemistry were apparently affected by the extent of photoactivity and surface reactions, the amount of generated oxygen and the reactivity of the surface atoms. The results showed small but consistent changes in the chemistry and texture of catalysts, which might affect their applications.
机译:将石墨碳氮化物和S掺杂的碳催化剂暴露于暗中或在可见光照射下的CO 2和/或水中。通过XPS和电位滴定研究了初始和暴露样品的表面化学。在多孔碳催化剂的情况下,还基于氮气的吸附来估计孔隙率的变化。结果表明,暴露于水和CO2O2导致其表面化学的变化。当在可见光照射下表面暴露于CO 2时,变化特别明显。主要是,观察到表面碳原子的氧化,其伴随着G-C3N4的情况下的表面氮,并在S掺杂的碳的情况下除去一些硫种类。这些变化是光敏性和水的氧化和CO 2的氧化的结果。此外,在黑暗中还注意到水和CO 2的化学反应性,分别与水解和氧化还原反应有关。化学的变化显然受到光活性和表面反应的程度,产生的氧气量和表面原子的反应性的影响。结果表明,催化剂的化学和催化剂的质地有很小但一致的变化,这可能会影响其应用。

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