Sol-gel auto-combustion synthesis of Ca2Fe2O5 brownmillerite nanopowders and thin films for advanced oxidation photoelectrochemical water treatment in visible light

被引:23
|
作者
Vanags, Martins [1 ,2 ]
Spule, Arnita [1 ]
Gruskevica, Kamila [3 ]
Vihodceva, Svetlana [1 ]
Tamm, Aile [4 ]
Vlassov, Sergei [4 ]
Sutka, Andris [1 ]
机构
[1] Riga Tech Univ, Res Lab Funct Mat Technol, Fac Mat Sci & Appl Chem, Paula Valdena 3-7, LV-1048 Riga, Latvia
[2] Univ Latvia, Inst Solid State Phys, Kengaraga 8, LV-1063 Riga, Latvia
[3] Riga Tech Univ, Water Res Lab, Fac Civil Engn, Kipsalas 6A, LV-1048 Riga, Latvia
[4] Univ Tartu, Inst Phys, W Ostwaldi St 1, EE-50411 Tartu, Estonia
来源
关键词
Iron oxide; Photocatalysis; Dye degradation; Photo-Corrosion; Stability; Z-SCHEME; PHOTOCATALYTIC ACTIVITY; ORGANIC POLLUTANTS; P-TYPE; SEMICONDUCTOR; STABILITY; ZNO; NANOHETEROSTRUCTURES; DEGRADATION; PERFORMANCE;
D O I
10.1016/j.jece.2019.103224
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
This study describes a straightforward Ca2Fe2O5 brownmillerite nanopowder and thin film synthesis by the water-based sol-gel auto-combustion method. The material characterization results confirmed the phase pure narrow bandgap Ca2Fe2O5 nanoparticle formation. The surface area of synthesized nanopowder was 13.55 m(2)/g. Powders at loading 1 g/l exhibit high visible light photocatalytic activity by degrading 10 mg/l methylene blue in water in 120 min confirmed by total organic carbon studies. The high visible light photocatalytic activity is related to Ca2Fe2O5 narrow band gap and high reduction potential of its conduction band which triggers the formation of superoxide radical center dot O-2(-). The limited chemical stability for Ca2Fe2O5 nanopowders was observed due to self-reduction under photocatalytic conditions. The degradation rate constant decreased almost five times already in the second photocatalysis cycle. Further, we are demonstrating the application of Ca(2)Fe(2)O(5 )films in the photoelectrochemical water treatment (PECWT) process. We show that brownmillerite films are becoming stable against photo-corrosion under positive bias in PECWT and could be suitable for dye degradation in water. In the PECWT process, the Ca2Fe2O5 is protected from self-reduction since the photoinduced electron under positive bias is moved away to the N electrode. Under short circuit or biased (0.5 V) conditions the rate constant for MB degradation is decreased only for approximately 15% in 6 cycles.
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页数:7
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