A kind of preparation method of dna sensing electrode based on anionic porphyrin-carbon nanotube
A carbon nanotube, sensing electrode technology, applied in the fields of electrochemistry and nanomaterials, can solve the problems of poor dispersibility and stability, difficult processing and manipulation, insoluble and infusible, etc.
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example 1
[0016] Example 1 The present invention is used in a kind of preparation method of DNA sensing electrode based on anion porphyrin-carbon nanotube
[0017] GCE with 0.3μm, 0.05μm α-Al 2 o 3 Polish to a mirror surface, then ultrasonically clean with ethanol and double distilled water respectively, and dry at room temperature. Ultrasonic dispersion of carbon nanotubes in 0.05M, pH = 8.00 Tris-HCl containing 0.1M KCl buffer to obtain a CNTs dispersion with a mass concentration of 2.5×10 -3 L -1 ; Then ssDNA (2.0×10 -6 M) and its complementary paired ssDNA (2.0×10 -7 M) Add the prepared CNTs dispersion, and then add the TSPP solution (2.5×10 -7 M), TSPP can be adsorbed on the surface of CNTs through π-π interaction, but cannot approach CNTs due to the repulsion of ssDNA; however, the dsDNA formed by the hybridization reaction falls off the surface of carbon nanotubes while TSPP is adsorbed on CNTs through π-π interaction Surface, and finally get modified electrode by drop coat...
example 2
[0018] The electrochemical performance detection of the DNA biosensing electrode that example 2 the present invention makes
[0019] (1) Electrochemical performance detection of different modified electrodes
[0020] Using GCE, CNTs / GCE, TSPP / GCE, and TSPP / CNTs / GCE modified electrodes as working electrodes, platinum wire as auxiliary electrode, and Ag-AgCl as reference electrode, a three-electrode system was established. On the workstation, within the potential range of -0.2~0.6V, at 0.005M[Fe(CN) 6 ] 3- / 4- , in 0.10M KCl electrolyte solution, the electrochemical performance was characterized by electrochemical cyclic voltammetry (CV), such as figure 1 As shown, it was found that the modified electrode ( figure 1 Curve d) compared to modified electrode alone ( figure 1 The peak currents of the curves a, b and c) are larger and the potential difference is smaller, indicating that the modified electrode has excellent electrical conductivity, indicating that the modified elec...
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