Hydrogen sulfide colorimetric sensor for targeted induction of mimic enzyme inactivation based on mixed node metal organic framework material
A technology of hydrogen sulfide and simulated enzymes, which is applied in the direction of analyzing materials through chemical reactions, material analysis through observing the impact on chemical indicators, color/spectral characteristic measurement, etc., which can solve the limitations of colorimetric sensor applications, single The problem of unsatisfactory catalytic activity of component MOFs has achieved obvious selectivity, improved sensitivity and selectivity, and simple operation
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Embodiment 1
[0026] Embodiment 1 Cu-Fe MOFs as the preparation method of artificial mimetic enzyme
[0027] Add 10 mg of organic ligand biphenyl-3,4,5-tricarboxylic acid (H 3 PTC) to dissolve, then add 0.14mL freshly prepared 0.2mol / L ferric nitrate nonahydrate (FeH 18 N 3 o 18 ) and 0.4mL 0.2mol / L copper nitrate trihydrate (Cu(NO 3 ) 2 ·3H 2 0), finally add glacial acetic acid 0.5mL. Seal the bottle (20mL) with a cap with a polytetrafluoroethylene gasket, sonicate until the solution is clear, put it in a blast drying oven preheated at 85°C for 19h, cool to room temperature, and wash with DMF and CH 2 Cl 2 The products were washed 2 to 3 times respectively, and finally dried naturally in the air to obtain the target product.
Embodiment 2
[0028] Morphology and structure analysis of embodiment 2Cu-Fe MOFs
[0029] In order to prove the successful preparation of Cu-Fe MOFs, a series of characterizations were carried out on their morphology and structure, such as figure 2 As shown, it can be seen from the scanning electron microscope (SEM) image that Cu-Fe MOFs are composed of petal-shaped elliptical aggregates, which are composed of cross-linked sheets with a size of 5-10 microns (μm); X-ray energy spectrum (EDS) analysis revealed that the atomic ratio of Cu / Fe in Cu-Fe MOFs was 2 / 1; X-ray diffraction (XRD) patterns showed that the as-prepared samples were crystalline. From these characterization results, it can be seen that Cu-FeMOFs have been successfully prepared.
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