Dynamically driven perovskite La-Fe-modified SrTiO3 nanocubes and their improved photoresponsive activity under visible light: influence of alkaline environment

被引:0
作者
Totsaporn Suwannaruang
Acapol Pratyanuwat
Putichot Sinthujariwat
Kitirote Wantala
Prae Chirawatkul
Narong Junlek
Supinya Nijpanich
Behzad Shahmoradi
Harikaranahalli Puttaiah Shivaraju
机构
[1] Khon Kaen University,Department of Chemical Engineering, Faculty of Engineering
[2] Khon Kaen University,Research Center for Environmental and Hazardous Substance Management (EHSM)
[3] Synchrotron Light Research Institute (Public Organization),Department of Environmental Health Engineering, Faculty of Health
[4] Kurdistan University of Medical Sciences,Department of Environmental Sciences, Faculty of Natural Science
[5] JSS Academy of Higher Education and Research,undefined
来源
Environmental Science and Pollution Research | 2023年 / 30卷
关键词
La-Fe co-doped SrTiO; Perovskite catalyst; Dynamic hydrothermal synthesis; Antibiotic pollutant elimination; Ciprofloxacin; Visible light;
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学科分类号
摘要
Visible-light active La-Fe-SrTiO3 (La0.01Sr0.99Fe0.01Ti0.99O3) photocatalysts were synthesized via a dynamic hydrothermal route under different NaOH concentrations (2, 3, 4, 5, and 6 M). The results showed that altering NaOH concentrations changed the physicochemical characteristics of the materials. Namely, the decrease in particle size was observed when the NaOH levels were increased. The specific surface area of the photocatalysts changed with an increased concentration of NaOH, and the maximum value was 17.10 m2/g in 5 M of NaOH. The crystal structure of all prepared samples remained unaffected when altered the NaOH concentration or when incorporated La and Fe in the lattice of SrTiO3. Namely, all samples synthesized under various NaOH concentrations crystallized and maintained in the standard cubic perovskite structure of SrTiO3. The increased NaOH concentration slightly altered the absorption wavelength towards a longer wavelength region. The La atom, replacing some Sr2+ in the structure of modified SrTiO3, was confirmed to be in the La3+ valence state. Simultaneously, Fe atoms demonstrating oxidation states of Fe3+ can also be incorporated into the SrTiO3 network. The photocatalytic degradation of ciprofloxacin antibiotic revealed that the highest performance was approximately 75% within 9 h over the La0.01Sr0.99Fe0.01Ti0.99O3 sample prepared at 5 M of NaOH via the dynamic hydrothermal process. Meanwhile, this photocatalyst also displayed greater activity than the pristine SrTiO3, the single-doped samples (SrFe0.01Ti0.99O3 and La0.01Sr0.99TiO3), and the La0.01Sr0.99Fe0.01Ti0.99O3 sample prepared through a static hydrothermal technique under the same synthesis condition.
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页码:90298 / 90317
页数:19
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