Carbon quantum dot doped carbon nitride composite nano material with photocatalytic antibacterial performance as well as preparation method and application thereof
A technology of composite nanomaterials and carbon quantum dots, which is applied in the field of carbon quantum dot-doped carbon nitride composite nanomaterials and its preparation, can solve the problems of cumbersome and complicated preparation methods, small specific surface area of composite materials, and high production costs, and achieve raw material Inexpensive, increased specific surface area, low cost effect
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Embodiment 1
[0054] Preparation of carbon quantum dot-doped carbon nitride composite nanomaterials CQDs\CN with photocatalytic antibacterial properties, including:
[0055] Prepare two crucibles of different sizes and specifications, add 1 g of ammonium citrate into the large crucible, and add 10 g of urea into the small crucible. Put the small crucible into the large crucible, cover it and place it in the muffle furnace, and heat it at 10°C min -1 The heating rate was heated to 600 °C and kept for 3 h, and finally the carbon quantum dot-doped carbon nitride composite nanomaterial CQDs\CN with photocatalytic antibacterial properties was obtained. Specific antibacterial effects such as figure 1 and figure 2 As shown, after 90 minutes of light irradiation, the inactivation rate of Escherichia coli reached 100%, and the inactivation rate of Staphylococcus aureus reached 97%.
Embodiment 2
[0057] Preparation of carbon quantum dot-doped carbon nitride composite nanomaterials CQDs\CN with photocatalytic antibacterial properties, including:
[0058] Prepare two crucibles of different sizes and specifications, add 1 g of ammonium citrate into the large crucible, and add 3 g of melamine into the small crucible. Put the small crucible into the large crucible, cover it and put it into the muffle furnace, and heat it at 6°C min -1 The heating rate was heated to 570 °C and kept for 3 h, and finally the carbon quantum dot-doped carbon nitride composite nanomaterial CQDs\CN with photocatalytic antibacterial properties was obtained. Specific antibacterial effects such as image 3 and Figure 4 As shown, after 90 minutes of light irradiation, the inactivation rate of Escherichia coli reached 99%, and the inactivation rate of Staphylococcus aureus reached 99%.
Embodiment 3
[0060] Preparation of carbon quantum dot-doped carbon nitride composite nanomaterials CQDs\CN with photocatalytic antibacterial properties, including:
[0061] Prepare two crucibles with different sizes and specifications, add 1 g of EDTA into the large crucible, and add 3 g of melamine into the small crucible. Put the small crucible into the large crucible, cover it and put it into the muffle furnace, and heat it at 6°C min -1 The heating rate was heated to 570 °C and kept for 3 h, and finally the carbon quantum dot-doped carbon nitride composite nanomaterial CQDs\CN with photocatalytic antibacterial properties was obtained. Specific antibacterial effects such as Figure 5 and Figure 6 As shown, after 90 minutes of light irradiation, the inactivation rate of Escherichia coli reached 98%, and the inactivation rate of Staphylococcus aureus reached 100%.
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