Ferriporphyrin organic frame material peroxidase mimic, and preparation method and application thereof
An organic framework and material simulation technology, which is applied in the direction of chemical reaction of materials for analysis, material analysis, chemiluminescence/bioluminescence, etc., can solve the problems of restriction enzyme application, preparation and purification, expensive storage, instability, etc., to achieve Easy post-treatment, good peroxidase activity, and low detection limit
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example 1
[0042] 106mg 0.2mmol of 1,6,7,12-tetrachloro-3,4,9,10-tetracarboxylic dianhydride (TAD), 50mg0.1mmol of 5,10,15,20-tetrakis(4-amino Phenyl) iron porphyrin (FeTAPP), 1000mg of imidazole and activated Type molecular sieves were added into a 20mL heat-resistant glass tube, and then three cycles of freeze-pump-thaw degassing treatment were performed, the tube was sealed, and the reaction was heated at 170°C for 3 days. The precipitate was obtained by centrifugal separation, washed with distilled water, 3% NaOH solution, ethanol, and chloroform respectively; the product was vacuum-dried at 120°C overnight.
example 2
[0044] The catalytic activity of TAP-COF for the catalytic oxidation of TMB in the presence of hydrogen peroxide was studied using the following method: 200 μL 0.32 mg / mL TAP-COF, 200 μL HO 2 o2 (30 mM) and 200 μL TMB (0.8 mM) were added to HAc-NaAc (0.2 M, pH 3.8) buffer, keeping the total reaction volume at 2 mL. Incubate for another 10 min at room temperature. The solution turns from colorless to blue image 3 , see the absorption peak at 652nm Figure 4 .
example 3
[0046] Add 200 μL 0.32 mg / mL TAP-COF, 200 μL H 2 o 2 (30mM) and 200μL TMB (0.8mM), keeping the total reaction volume 2mL. Incubate for another 10 min at room temperature. Measure the absorbance at 652nm wavelength, see Figure 5 .
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