Carbon nitride-modified titanium dioxide super-hydrophilic porous film as well as preparation method and application thereof
A titanium dioxide and porous film technology, applied in the field of carbon nitride modified titanium dioxide superhydrophilic porous film and its preparation, can solve problems such as limited use, achieve cost reduction, easy realization of preparation conditions, and improvement of superhydrophilic realization conditions. Effect
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Embodiment 1
[0029] Prepare carbon nitride modified titanium dioxide superhydrophilic porous film according to the following steps:
[0030] (1) Using dicyandiamide as a precursor, first place the precursor in a calcination environment, raise the temperature to 400°C at a heating rate of 0.1°C / min and keep the temperature for calcination for 8 hours, then grind the obtained yellow solid into fine powder, Then place the fine powder in a calcination environment, raise the temperature to 400°C at a heating rate of 1°C / min and keep the temperature for calcination for 6 hours to prepare carbon nitride nanosheets;
[0031] (2) Ultrasonic disperse the carbon nitride nanosheets prepared in step (1) in absolute ethanol to obtain a carbon nitride dispersion of 0.01 mg / mL, then take 60 unit volumes of the carbon nitride ethanol dispersion, add 20 unit volumes of tetrabutyl titanate, followed by adding 5 unit volumes of acetylacetone and 5 unit volumes of monoethanolamine to obtain a uniform solution;...
Embodiment 2
[0039] Prepare carbon nitride modified titanium dioxide superhydrophilic porous film according to the following steps:
[0040] (1) Using melamine as the precursor, first place the precursor in a calcination environment, raise the temperature to 600°C at a heating rate of 5°C / min and keep the temperature for calcination for 2 hours, then grind the obtained yellow solid into fine powder, and then The fine powder is placed in a calcination environment, and the temperature is raised to 500°C at a heating rate of 10°C / min, and the temperature is maintained for 2 hours to be calcined to obtain carbon nitride nanosheets;
[0041](2) ultrasonically disperse the carbon nitride nanosheets prepared in step (1) in absolute ethanol to obtain a carbon nitride dispersion of 2 mg / mL, then take 10 unit volumes of the carbon nitride ethanol dispersion and add 10 Isopropyl titanate per unit volume, followed by adding 0.1 unit volume of acetylacetone and 0.1 unit volume of diethanolamine to obta...
Embodiment 3
[0048] Prepare carbon nitride modified titanium dioxide superhydrophilic porous film according to the following steps:
[0049] (1) Using melamine as the precursor, first place the precursor in a calcination environment, raise the temperature to 550°C at a heating rate of 3°C / min and keep the temperature for calcination for 4 hours, then grind the obtained yellow solid into fine powder, and then The fine powder is placed in a calcination environment, and the temperature is raised to 490°C at a heating rate of 6°C / min, and the temperature is maintained for 3h to be calcined to obtain carbon nitride nanosheets;
[0050] (2) ultrasonically disperse the carbon nitride nanosheets prepared in step (1) in absolute ethanol to obtain a carbon nitride dispersion of 1 mg / mL, then take 30 unit volumes of the carbon nitride ethanol dispersion and add 7 Unit volume of isopropyl titanate, followed by adding 0.6 unit volume of acetylacetone and 0.4 unit volume of diethanolamine to obtain a un...
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