Título
Enhancement of NOx photo-oxidation by Fe-doped TiO2 nanoparticles
11627/549811627/5498
Autor
Martínez Oviedo, Adriana
Ray, Schindra Kumar
Gyawali, Gobinda
Rodríguez González, Vicente
Lee, Soo Wohn
Resumen
"Microwave hydrothermal-assisted sol-gel method was employed to synthesize the Fe doped TiO2 photocatalyst. Themorphological analysis suggests anatase phase nanoparticles of ~20 nm with an SBET area of 283.99 m2/g. The doping of Feions in TiO2 created oxygen vacancies and Ti3+ species as revealed through the XPS analysis. The reduction of the band gap(3.1 to 2.8 eV) is occurred by doping effect. The as-prepared photocatalyst was applied for removal of NOx under solar lightirradiation. The doping of Fe in TiO2 facilitates 75 % of NOx oxidation efficiency which is more than two-fold enhancementthan the TiO2 photocatalyst. The possible reason of enhancement is associated with high surface area, oxygen vacancy, andreduction of the band gap. Also, the low production of toxic intermediates, NO2 gas, is further confirmed by Combustion IonChromatography. The mechanism related NOx oxidation by the doped photocatalyst is explained in this study."
Fecha de publicación
2019Tipo de publicación
articleDOI
https://doi.org/10.36410/jcpr.2019.20.3.222Área de conocimiento
QUÍMICAEditor
NRFPalabras clave
Fe doped TiO2Microwave hydrothermal
Sol-gel
DeNOx
NO2 inhibition