Cobaltosic oxide nano flower ball, preparation method and various mimic enzyme activity applications
A nano-technology of cobalt tetroxide, which is applied in the field of cobalt tetroxide nano flower bulbs and preparation, can solve the problem of single imitation enzyme activity, etc., and achieve the effect of simple and effective preparation method
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[0042]The third embodiment of the present invention provides an application of the above-mentioned cobalt trioxide nanocurds in biosensing, tumor drug, biocatalyst and / or environmental monitoring.
[0043] The fourth embodiment of the present invention provides a method for catalyzing the oxidation and color development of 3,3',5,5'-tetramethylbenzidine (TMB). ',5,5'-Tetramethylbenzidine in acetate buffer, and then reacted.
[0044] In one or more examples of this embodiment, the pH of the acetate buffer is 4.3-4.7.
[0045] In one or more examples of this embodiment, the addition ratio of cobalt trioxide nanocurds to 3,3',5,5'-tetramethylbenzidine is 15-25:1, μg:mol.
[0046] In one or more examples of this embodiment, the reaction temperature is 23-27°C.
[0047] The fifth embodiment of the present invention provides a method for catalyzing the color development of 3,3',5,5'-tetramethylbenzidine catalyzed by hydrogen peroxide. and 3,3',5,5'-tetramethylbenzidine in acetate...
Embodiment 1
[0061] Co with multi-enzyme activity 3 o 4 Preparation of nanozymes:
[0062] Freshly prepared ice-cold 10 mM (final concentration, the same below) sodium borohydride aqueous solution was added dropwise to 2 mM cobalt chloride aqueous solution. After overnight stirring at room temperature, the pellet was centrifuged and washed 3 times. Co obtained after freeze-drying 3 o 4 Nano flower balls. Will Co 3 o 4 Prepared into a 1mg / mL solution for use. figure 1 Co observed by transmission electron microscopy 3 o 4 TEM imaging. figure 2 for Co 3 o 4 X-ray photoelectron spectroscopy analysis diagram.
Embodiment 2
[0064] co 3 o 4 Oxygenase Activity Verification of Nanozymes:
[0065] Experimental system a: The catalytic reaction system is composed of acetate buffer (pH 4.5, 100mM), Co 3 o 4 (10μg / mL) and TMB (0.5mM) were reacted at 25°C for 10 minutes, and the visible absorption spectrum in the range of 400–800nm was recorded by a microplate reader.
[0066] Another control experiment b: the catalytic system contains acetate buffer (pH 4.5, 100mM) and the Co obtained in the above-mentioned Example 1 3 o 4 (10 μg / mL), the remaining reaction conditions are the same as the above-mentioned experimental system, and the absorbance value is measured after 10 minutes.
[0067] Another control experiment c: the Co obtained in the above-mentioned Example 1 is not added to the catalytic reaction system 3 o 4 , after reacting for 10 minutes under the same conditions as the above-mentioned experimental system, the absorbance value was detected.
[0068] Such as image 3 As shown, the expe...
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