Magnetically supported titanium dioxide photocatalyst and preparation method thereof
A technology of titanium dioxide and photocatalyst, which is applied in the field of magnetically supported titanium dioxide photocatalyst and its preparation, can solve the problems of low catalytic efficiency and limit the practical application of photocatalyst, and achieve high photocatalytic activity, good photocatalytic activity and easy availability of raw materials Effect
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Embodiment 1
[0026] At normal temperature and pressure, 1×10 -3 mol FeCl 3 ·6H 2 O, 1.44 g of anhydrous sodium acetate and 0.4 g of polyethylene glycol 200 were dissolved in 20 mL of ethylene glycol, and mixed thoroughly under magnetic stirring to obtain a clear solution. The clarified solution was sealed and placed in a polytetrafluoroethylene-lined stainless steel reaction kettle with a volume of 22 mL, and the reaction kettle was placed in an oven, and the temperature was raised to 180 °C at a heating rate of 5 °C / min. Reaction at high temperature for 8 h. After the reaction is over, centrifuge the resulting mixture at 12,000 r / min for 2 min, wash the obtained black solid with absolute ethanol for more than 8 times, and dry the obtained solid in an oven at 80 °C 8 h, you can get ferric oxide. Scanning electron microscopy (SEM) characterization, such as figure 1 It can be seen that the product is spherical particles with good dispersion and a diameter of about 200 nm; X-ray diffrac...
Embodiment 2
[0030] At normal temperature and pressure, 2×10 -3 mol FeCl 3 ·6H 2 O, 1.44 g of anhydrous sodium acetate and 0.4 g of polyethylene glycol 200 were dissolved in 20 mL of ethylene glycol, and mixed thoroughly under magnetic stirring to obtain a clear solution. The clarified solution was sealed and placed in a polytetrafluoroethylene-lined stainless steel reaction kettle with a volume of 22 mL, and the reaction kettle was placed in an oven, and the temperature was raised to 180 °C at a heating rate of 5 °C / min. Reaction at high temperature for 8 h. After the reaction is over, centrifuge the resulting mixture at 12,000 r / min for 2 min, wash the obtained black solid with absolute ethanol for more than 8 times, and dry the obtained solid in an oven at 80 °C 8 h, you can get ferric oxide. Scanning electron microscopy (SEM) characterization, such as Figure 5 It can be seen that the product is spherical particles with good dispersion and a diameter of about 400 nm; X-ray diffra...
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