Hedgehog-shaped catalytic material with atomic catalytic center and application of hedgehog-shaped catalytic material in preparation of antibacterial drugs
A technology of catalytic materials and antibacterial drugs, applied in antibacterial drugs, wave energy or particle radiation treatment materials, medical preparations containing active ingredients, etc., can solve the problems of limited bacterial capture ability and poor cytotoxicity, and achieve the goal of promoting wound healing. Effects of healing, good antibacterial activity
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Embodiment 1
[0067] Example 1 Preparation of hedgehog-like catalytic material Fe-Art M with atomic catalytic center
[0068] 1. Preparation of hedgehog-like metal-organic framework Atr M
[0069]50 mL of methanol containing zinc acetate dihydrate (0.22 g, 1 mmol) was mixed with 20 mL of methanol containing 2,5-dihydroxyterephthalic acid (60 mg, 0.3 mmol), and the resulting mixture was sonicated for 30 minutes. Then centrifuged to get the precipitate, and after washing with water three times, Zn-MOF-74 was obtained.
[0070] The obtained Zn-MOF-74 and 75 mL of deionized water containing urea (25 mg, 0.42 mmol) were added into a Teflon autoclave, and reacted at 175° C. for 24 hours. Then the obtained precipitate was washed with water and ethanol, respectively, and dried at 80° C. for 5 h under vacuum. Then, the obtained product was transferred to a ceramic boat and placed in a tube furnace, heated to 1100 °C at a heating rate of 5 °C / min for 1 h, and then naturally cooled to room temperatu...
Embodiment 2
[0073] Example 2 Preparation of hedgehog-like catalytic material V-Art M with atomic catalytic center
[0074] With reference to the preparation method of Example 1, the only difference is that the metal acetyl salt in step 2 is replaced by iron (III) acetylacetonate by vanadium (III) acetylacetonate to prepare a hedgehog-shaped catalytic material with an atomic catalytic center, which is the present invention Artificial macrophage V-Art M with atomic catalytic center.
[0075] Beneficial effects proved by the following experimental examples.
experiment example 1
[0076] Experimental Example 1 Structural Characterization
[0077] 1. Test samples
[0078] The target product Fe-Art M obtained in Example 1, the target product V-Art M obtained in Example 2, and the Atr M obtained in Step 1 of Example 1.
[0079] 2. Experimental method
[0080] On a TriStar 3020 accelerated surface area and porosimeter equipped with automatic surface area, N 2 Adsorption analysis, calculation of the surface area and pore size distribution of the material to be tested. X-ray photoelectron spectroscopy (XPS) was obtained by XPS equipment (ESCAL 250) to detect the composition of M-Art M and confirm the successful introduction of metals. Scanning electron microscope (SEM) images were acquired using Apreo S HiVoc (Thermo Fisher Scientific, FEI). Transmission electron microscope (TEM) images and maps were acquired with a Talos F200x TEM microscope (FEI Ltd., USA) operated at 200 kV. X-ray diffraction (XRD) patterns by Bruker D8 Focus X-ray diffractometer show...
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