Magnetic nano silver antibacterial material and preparation method thereof
An antibacterial material and magnetic nanotechnology, applied in the field of magnetic nanosilver antibacterial materials, can solve the problems of difficulty in separation, limitation of polymer microspheres or silica gel microspheres, hidden safety hazards of nano silver particles, etc., and achieve anti-oxidation and anti-dissolution capabilities. Improve the effect of improving, improving durability, good antibacterial advantage
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Embodiment 1
[0037] Embodiment 1: the preparation method of magnetic nano-silver antibacterial material of the present invention
[0038] Fe provided by the present invention 3 o 4 -SiO 2 -Ag The synthetic schematic diagram of magnetic nano-silver antibacterial material is shown in Figure 1, and its specific preparation method can be divided into the following three steps:
[0039] First, Fe was prepared by hydrothermal oxidation 3 o 4 nanoparticles. First, 2.5g FeSO 4 ·7H 2 O was dissolved in 30 mL of deionized water; in a water bath at 30°C with vigorous stirring, 10 mL of 50 (g / L) polyethylene glycol-20000 (PEG-20000) and 30 mL of 28% ammonia were added dropwise to the above solution; Keep the pH around 10, then add 30% hydrogen peroxide (H 2 o 2 ) solution 0.27mL, after stirring for 20 minutes, put the above mixed solution into a stainless steel reaction kettle lined with polytetrafluoroethylene, seal it and place it in an oven at 180°C, take it out after heating for 5 hours, ...
Embodiment 2
[0042] Embodiment 2: prepare Fe of the present invention 3 o 4 -SiO 2 -Condition optimization of Ag magnetic nano antibacterial materials
[0043] In the preparation of magnetic nano-silver antibacterial materials, different doses of TEOS were selected for SiO 2 coating, different doses of AgNO 3 And lactose solution to prepare nano-silver, the mass percentage, magnetism and antibacterial ability of each part of the obtained antibacterial agent are different. Therefore, in this example, the dosage of TEOS and AgNO 3 The ratio of lactose concentration is optimized.
[0044] 1. Dose optimization of TEOS
[0045] to Fe 3 o 4 When particles are coated with silica gel, if the dose of TEOS is too small, the 3 o 4 If the silica gel layer coated on the surface of the particles is too thin, the nano-silver particles that can be loaded in the next step will be relatively small, which will affect its bactericidal effect; and if the dose of TEOS is too large, the formed silica g...
Embodiment 3
[0053] Embodiment 3: Structural characterization of magnetic nano-silver antibacterial material of the present invention
[0054] The present embodiment is the structural characterization of the third group of magnetic nano-silver antibacterial materials optimized in Example 2, specifically as follows:
[0055] 1. EDX spectrum
[0056] Adopt DX-4 type X-ray energy spectrometer (Philips company) to measure the elemental composition in the magnetic nano-silver antibacterial particle, the result is as shown in Figure 2. The mass percentages of various elements are shown in Table 3;
[0057] Table 3 Fe 3 o 4 -SiO 2 -Mass percentage of various elements in Ag magnetic nanoparticles
[0058] Fe
0
Si
Ag
The mass of various elements
Ratio (%)
66.0
19.2
1.40
13.4
[0059] 2. XRD spectrum
[0060] The X-ray diffraction (XRD) spectrum of magnetic nano-silver antibacterial particles is obtained on b / max-RB ...
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Abstract
Description
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Application Information

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