A controllable preparation method of polysaccharide derivative-induced gold nanoparticles
A polysaccharide derivative, gold nanoparticle technology, applied in nanotechnology, nanotechnology, nanotechnology and other directions for materials and surface science, achieving good application prospects, good water solubility and biocompatibility, and simple and easy operation steps row effect
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Embodiment 1
[0023] Embodiment 1: Preparation of oxidized Ketran polysaccharide derivatives
[0024] In 0.2 mol / L sodium acetate buffer solution (pH 4.8), add curdlan polysaccharide, sodium chlorate and 4-acetamide-2,2,6,6-tetramethylpiperidinyloxy free radical, place at 35 ℃ constant temperature water bath, mix well, quickly add sodium hypochlorite, seal the reaction for 48 hours, the excess mass concentration is 95% ethanol precipitation, stand overnight at 4 ℃, centrifuge at 5000 rpm for 20 minutes, dialyze with distilled water for 48 hours, freeze-dry to obtain oxidized Delan polysaccharide derivatives; described codlan polysaccharide is a white solid powder, purchased from Japan Wako Pure Chemical Co., Ltd.; described sodium acetate buffer solution, codlan polysaccharide, sodium chlorate, 4-acetamide-2 , 2,6,6-tetramethylpiperidinyloxy radical, sodium hypochlorite mass volume ratio is 100 (mL): 1 (g): 0.68 (g): 0.096 (g): 0.62 (mL), the oxidation The number-average molecular weight o...
Embodiment 2
[0026] Add 2.0 mL of oxidized codran polysaccharide solution with a mass concentration of 2.0 mg / mL and a pH of 5.5 to 2.0 mL of a chloroauric acid aqueous solution with a molar concentration of 10 mmol / L, mix well, seal, and react at a constant temperature of 100 °C After 1.5 h, cool to room temperature, filter, centrifuge, disperse, dialyze and freeze-dry to obtain polysaccharide fund nanoparticles.
[0027] Disperse the gold nanoparticles prepared above in deionized water to obtain an aqueous solution of gold nanoparticles with a mass concentration of 0.5 mg / mL, and observe its TEM image, as shown in figure 1 As shown, the morphology of gold nanoparticles is mostly rod-shaped, triangular and spherical, and the particle size uniformity is poor, accompanied by a small amount of agglomeration.
Embodiment 3
[0029] This example is basically the same as Example 2, except that a sodium hydroxide solution with a molar concentration of 1.0 mol / L is used to adjust the pH of the oxidized curdlan polysaccharide solution to 7.9.
[0030] Observe the TEM figure of the above-mentioned prepared gold nanoparticles, such as figure 2 As shown, the morphology of gold nanoparticles is spherical and rod-shaped, the average diameter of spherical nanoparticles is ~26 nm, and the average length of rod-shaped nanoparticles is ~32 nm.
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