Three-dimensional flower-like TiO2 microspheres composed of nanowires and preparation method thereof
A nanowire and flower-like technology is applied in the field of three-dimensional flower-like TiO2 materials and their preparation, which can solve the problems of severe hydrolysis, difficulty in obtaining three-dimensional complex structures, and dangers, and achieves simple process, novel appearance and mild reaction conditions. Effect
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Embodiment 1
[0030] (1) Put 0.1g of metallic Ti powder into 150mL of a mixed solution of hydrogen peroxide and nitric acid, wherein the concentration of hydrogen peroxide is 6M, and the concentration of nitric acid is 0.1M; then condense and reflux in an oil bath at 80°C for 4 hours to obtain an orange color solution;
[0031] (2) Measure 18mL of the orange-yellow solution prepared in step (1), mix it with 42mL of 10M NaOH solution in a PTFE liner with a volume of 100mL and stir for 10min, then hydrothermally react at 150°C for 3h;
[0032] (3) After the reaction, the precipitate was separated by centrifugation, washed with 0.1M nitric acid and deionized water until the pH value was 7; then dried in an oven at 80°C to obtain a three-dimensional flower-like TiO composed of nanowires 2 Material.
[0033] figure 1 , figure 2 The three-dimensional flower-like TiO that this embodiment makes 2 The scanning electron micrographs of the material at different magnifications, it can be seen from...
Embodiment 2
[0036] (1) Put 0.1g of metallic Ti powder into 150mL of a mixed solution of hydrogen peroxide and nitric acid, wherein the concentration of hydrogen peroxide is 5M, and the concentration of nitric acid is 0.1M; then condense and reflux in an oil bath at 80°C for 5 hours to obtain an orange color solution;
[0037] (2) Measure 18mL of the orange-yellow solution prepared in step (1), mix it with 42mL of 10M NaOH solution in a PTFE liner with a volume of 100mL and stir for 10min, then carry out at a temperature of 140°C Hydrothermal reaction, time is 5h;
[0038] (3) After the reaction is completed, the product is centrifuged and washed with 0.1M nitric acid and deionized water until the pH value of the product obtained in step (2) is 7; then dried in an oven at 80°C to obtain the nanowire composition The three-dimensional flower-like TiO 2 Material.
[0039] Figure 4 , Figure 5 Shown is the three-dimensional flower-like TiO prepared in this example 2 The scanning electro...
Embodiment 3
[0043] (1) Put 0.05g of metallic Ti powder into 100mL of a mixed solution of hydrogen peroxide and nitric acid, wherein the concentration of hydrogen peroxide is 5M, and the concentration of nitric acid is 0.1M; then condense and reflux in an oil bath at 90°C for 6 hours to obtain orange-yellow solution;
[0044] (2) Measure 18mL of the orange solution prepared in step (1), mix it with 42mL of 9M NaOH solution in a PTFE liner with a volume of 100mL and stir for 10min, then hydrothermally react at 130°C for 5h;
[0045] (3) After the reaction is completed, the precipitate is separated by centrifugation, washed with 0.1M nitric acid and deionized water until the pH value is 7; then dried in an oven at 80°C, and the nanowires radiating from the center are obtained. flower-like TiO 2 Material.
[0046] Scanning electron microscopy shows that the three-dimensional flower-like TiO prepared in this example 2 Flower-like TiO 2 The particle size of the microsphere is about 5 μm, an...
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