A kind of Cu-doped modified tio2 photocatalyst and preparation method thereof
A photocatalyst and catalyst technology, applied in the direction of catalyst activation/preparation, chemical instruments and methods, physical/chemical process catalysts, etc., can solve the problems of expensive equipment, limited application range, small specific surface area, etc., to increase adsorption capacity and adsorption The effect of high volume, good recyclability, and large specific surface area
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[0029] The invention provides a Cu-doped modified TiO 2 Photocatalyst and its preparation method, using electrochemical anodic oxidation method to directly prepare Cu-doped modified TiO with two-dimensional structure, highly ordered arrangement and strong visible light response performance on CuTi alloy wire or alloy rod substrate 2 Photocatalyst, which can increase the adsorption of catalytic degradation products and enhance TiO 2 Utilization efficiency of the solar spectrum by photocatalysts to promote TiO 2 Applications in the field of photocatalysis.
[0030] In this application, the term "crystallization" means that when TiO is annealed at a certain temperature 2 Structural transformation of nanotubes from amorphous to crystalline phase. The term "precursor" refers to TiO 2 Samples of nanotube array films without annealing and crystallization.
[0031] Using the two-dimensional structure of the present invention and Cu-doped TiO 2 photocatalyst, added TiO 2The spec...
Embodiment 1
[0033] In this example 1, Cu-doped TiO with a two-dimensional structure 2 A method for preparing a nanotube array, comprising the following steps:
[0034] (1) Please refer to figure 1 , a Cu5-Ti95 alloy wire substrate 1 with a diameter of 3 mm and a length of 20 mm is ground and polished with metallographic sandpaper, and the substrate 1 is prepared by an arc melting method;
[0035] (2) Ultrasonic cleaning the alloy wire obtained in step (1) in acetone for 15 minutes, then ultrasonic cleaning in absolute ethanol for 5 to 15 minutes, and finally rinsing with distilled water for 3 to 5 times, the Cu5-Ti95 alloy wire after cleaning Use inert gas (such as: nitrogen or argon, etc.) to blow and dry for later use. In this embodiment 1, the inert gas adopts nitrogen;
[0036] (3) Weigh 5.55gNH 4 Dissolve F in 15ml deionized water and stir with a magnetic stirrer to make NH 4 F is completely dissolved, and then mixed with 485ml formamide to obtain an electrolyte;
[0037] (4) U...
Embodiment 2
[0043] In this Example 2, Cu-doped TiO with a two-dimensional structure 2 A method for preparing a nanotube array, comprising the following steps:
[0044] Except the voltage of step (4) and the annealing temperature of step (7), other implementation steps are identical with embodiment 1, and the voltage of step (4) is: the DC constant voltage of 30V; The annealing temperature of step (7) is 550°C.
[0045] The two-dimensional structure Cu-doped modified TiO prepared in Example 2 2 Nanotube arrays whose structural units are Cu-doped TiO 2 Nanotubes, and there is a layered structure, in the large black area, Cu-doped TiO 2 The nanotube length, tube diameter and tube wall thickness are about 200-300nm, 40-50nm and 5-10nm respectively. While in the petal-shaped region, Cu-doped TiO 2 The nanotube length, tube diameter and tube wall thickness are about 500-800nm, 40-50nm and 5-10nm respectively. Cu-doped modified TiO prepared in Example 2 2 The absorption band edge of the n...
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