Graphene composite nano-material and preparation method and application thereof
A composite nanomaterial, graphene composite technology, applied in separation methods, chemical instruments and methods, special compound water treatment, etc., to achieve the effects of excellent performance, large surface-loaded free charge density, and high conductivity
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Embodiment 1
[0023] A preparation method of a graphene composite nanomaterial, specifically comprising the steps of:
[0024] (1) Preparation of boron-nitrogen co-doped graphene: Weigh 15g of graphene oxide, add 30mL of deionized water, and ultrasonically disperse to obtain a graphene oxide dispersion, and then add 1.0 oz. g sodium borohydride and 2 g urea, and transfer the obtained mixed solution to a hydrothermal reaction kettle for 16 hours at 180° C. to obtain a precipitate, wash and dry to obtain boron-nitrogen co-doped graphene;
[0025] (2)TiO 2 / Preparation of boron-nitrogen co-doped graphene material: Take 4g of hexadecylamine and add it to 1.5mL of 0.1mol / L potassium chloride aqueous solution and 160mL of absolute ethanol, ultrasonically, and then slowly add 8mL of isopropyl titanate to react 18 hours, filtered, washed, dried to obtain TiO 2 Precursor; then get 16g of boron-nitrogen co-doped graphene in step (1) and add 80mL of ethanol, ultrasonic for about 1h to form a dispers...
Embodiment 2
[0027] A preparation method of a graphene composite nanomaterial, specifically comprising the steps of:
[0028] (1) Preparation of boron-nitrogen co-doped graphene: Weigh 10g of graphene oxide, add 20mL of deionized water, and ultrasonically disperse to obtain a graphene oxide dispersion, and then add 0.5 g sodium borohydride and 1 g urea, and transfer the resulting mixed solution to a hydrothermal reaction kettle for 18 hours at 150°C to obtain a precipitate, wash and dry to obtain boron-nitrogen co-doped graphene;
[0029] (2)TiO 2 / Preparation of boron-nitrogen co-doped graphene material: Take 3g hexadecylamine and add it to 1mL concentration of 0.15mol / L potassium chloride aqueous solution and 120mL absolute ethanol, sonicate, then slowly add 5mL isopropyl titanate to react for 15 hours, filtered, washed, and dried to obtain TiO 2 Precursor; then get 10g of boron-nitrogen co-doped graphene in step (1) and add 60mL of ethanol, ultrasonic for about 1h to form a dispersion...
Embodiment 3
[0031] A preparation method of a graphene composite nanomaterial, specifically comprising the steps of:
[0032] (1) Preparation of boron-nitrogen co-doped graphene: Weigh 20g of graphene oxide, add 40mL of deionized water, and ultrasonically disperse to obtain a graphene oxide dispersion, and then add 1.5 oz. g of sodium borohydride and 1 to 3 g of urea, and transfer the resulting mixed solution to a hydrothermal reactor at 200°C for 12 hours to obtain a precipitate, which is washed and dried to obtain boron-nitrogen co-doped graphene;
[0033] (2)TiO 2 / Preparation of boron-nitrogen co-doped graphene material: Take 3-5g of hexadecylamine and add it to 2mL of 0.05mol / L potassium chloride aqueous solution and 240mL of absolute ethanol, ultrasonically, and then slowly add 0mL of isopropyl titanate React for 20 hours, filter, wash and dry to obtain TiO 2 Precursor; then take 20g of boron-nitrogen co-doped graphene in step (1) and add 100mL of ethanol, ultrasonic for about 1h t...
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