Method for preparing Nano silver grain, and prepared Nano silver grain
A technology of silver nanoparticles and silver nitrate, which is applied in the fields of botanical equipment and methods, chemical instruments and methods, dyeing polymer organic compounds, etc., can solve the problems of low solubility and insolubility of silver nanoparticles, limiting the use of silver nanoparticles, etc. , to achieve good water solubility and biocompatibility, good uniformity, no toxic side effects
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Embodiment 1
[0037] Dissolve the above-mentioned chitosan with a deacetylation degree ≥ 70% and an average molecular weight of about 20,000 in 0.02% acetic acid, and then mix the solution with silver nitrate solution to obtain a mixed solution, which contains 0.005wt% chitosan sugar and 2.0 x 10 -3 mol.L -1 of silver nitrate. The mixed solution was adjusted to pH 3.0 with acetic acid; 60 The Co source is irradiated, and the irradiation dose is 10kGy to obtain a brownish-yellow solution; the solution is dropped on a copper grid to dry, and then scanned with a transmission electron microscope, the results are as follows Figure 1A (TEM is magnified 40,000 times, and the scale bar in the figure is 50nm), the particle size distribution is as follows Figure 1B shown.
[0038] The results show that: from Figure 1A It can be seen that the particle size of the silver nanoparticles prepared by the preparation method of the present invention is relatively uniform, Figure 1B It can also be dem...
Embodiment 2
[0040] Dissolve the above-mentioned chitosan with a deacetylation degree ≥ 70% and an average molecular weight of about 20,000 in 0.01% acetic acid, and then mix the solution with silver nitrate solution to obtain a mixed solution, which contains 0.005wt% chitosan sugar and 1.0 x 10-3 mol.L -1 silver nitrate, the mixed solution was adjusted to pH 3.0 with acetic acid; 60 The Co source is irradiated, and the irradiation dose is 10kGy to obtain a yellow solution; this solution is dropped on a copper grid to dry, and then scanned with a transmission electron microscope, the results are as follows Figure 2A (40,000-fold magnification, the scale bar in the figure is 50nm), the particle size distribution is as follows Figure 2B shown.
[0041] The results show that: from Figure 2A It can be seen that the particle size of the silver nanoparticles prepared by the preparation method of the present invention is relatively uniform, Figure 2B It can also be proved that the particl...
Embodiment 3
[0043] Dissolve the above-mentioned chitosan with a deacetylation degree ≥ 70% and an average molecular weight of about 15,000 in 0.03% acetic acid, and then mix the solution with silver nitrate solution to obtain a mixed solution, which contains 0.005wt% chitosan sugar and 5.0 x 10 -4 mol.L -1 silver nitrate, the mixed solution was adjusted to pH 3.0 with acetic acid; 60 The Co source is irradiated, and the irradiation dose is 10kGy to obtain a bright yellow solution; the solution is dropped on a copper grid to dry, and then scanned with a transmission electron microscope, the results are as follows Figure 3A (TEM is magnified 40,000 times, and the scale bar in the figure is 50nm), the particle size distribution is as follows Figure 3B shown.
[0044] The results show that: from Figure 3A It can be seen that the particle size of the silver nanoparticles prepared by the preparation method of the present invention is relatively uniform, Figure 3B It can also be proved ...
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Abstract
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