Mahadik M A, Shinde S S, Pathan H M, Rajpure K Y, Bhosale C H
Electrochemical Materials Laboratory, Department of Physics, Shivaji University, Kolhapur 416 004, India.
Advanced Physics Laboratory, Department of Physics, University of Pune, Pune 411 007, India.
J Photochem Photobiol B. 2014 Dec;141:315-24. doi: 10.1016/j.jphotobiol.2014.10.014. Epub 2014 Nov 1.
The Fe2O3, Au:Fe2O3, TiO2/Fe2O3 and TiO2/Au:Fe2O3 thin films are successfully prepared by the spray pyrolysis technique at an optimised substrate temperature of 400 °C and 470 °C, respectively onto amorphous and F:SnO2 coated glass substrates. The effect of TiO2 layer onto photoelectrochemical (PEC), structural, optical and morphological properties of Fe2O3, Au:Fe2O3, TiO2/Fe2O3 and TiO2/Au:Fe2O3 thin films is studied. The PEC characterization shows that, maximum values of short circuit current (Isc) and open circuit voltage (Voc) are (Isc = 185 μA and Voc = 450 mV) are at 38 nm thickness of TiO2. Deposited films are polycrystalline with a rhombohedral and anatase crystal structure having (104) preferred orientation. SEM and AFM images show deposited thin films are compact and uniform with seed like grains. The photocatalytic activities of the large surface area (64 cm(2)) TiO2/Au:Fe2O3 thin film photocatalysts were evaluated by photoelectrocatalytic degradation of industrial wastewater under sunlight light irradiation. The results show that the TiO2/Au:Fe2O3 thin film photocatalyst exhibited about 87% and 94% degradation of pollutant in sugarcane and textile industrial wastewater, respectively. The significant reduction in COD and BOD values from 95 mg/L to 13 mg/L and 75 mg/L to 11 mg/L, respectively was also observed.
通过喷雾热解技术,分别在400℃和470℃的优化衬底温度下,成功地在非晶态和F:SnO₂涂层玻璃衬底上制备了Fe₂O₃、Au:Fe₂O₃、TiO₂/Fe₂O₃和TiO₂/Au:Fe₂O₃薄膜。研究了TiO₂层对Fe₂O₃、Au:Fe₂O₃、TiO₂/Fe₂O₃和TiO₂/Au:Fe₂O₃薄膜的光电化学(PEC)、结构、光学和形态学性能的影响。PEC表征表明,短路电流(Isc)和开路电压(Voc)的最大值(Isc = 185 μA,Voc = 450 mV)出现在TiO₂厚度为38 nm时。沉积的薄膜为多晶,具有菱面体和锐钛矿晶体结构,具有(104)择优取向。扫描电子显微镜(SEM)和原子力显微镜(AFM)图像显示,沉积的薄膜致密且均匀,具有种子状晶粒。通过在阳光照射下对工业废水进行光电催化降解,评估了大表面积(64 cm²)的TiO₂/Au:Fe₂O₃薄膜光催化剂的光催化活性。结果表明,TiO₂/Au:Fe₂O₃薄膜光催化剂对甘蔗和纺织工业废水中污染物的降解率分别约为87%和94%。还观察到化学需氧量(COD)和生化需氧量(BOD)值分别从95 mg/L显著降低到13 mg/L和从75 mg/L降低到11 mg/L。