Rare earth-doped cobalt phosphorus ternary alloy-modified nanometer porous copper flexible enzyme-free glucose sensing electrode and fabrication method thereof
A nanoporous copper and ternary alloy technology, which is applied to the electrochemical variables of materials, material analysis through electromagnetic means, instruments, etc., can solve the problems of inability to apply micro sensors, etc., to improve catalytic performance, slow down concentration polarization, The effect of enhancing the binding force
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[0059] A method for preparing a flexible non-enzyme glucose sensing electrode of rare earth-doped cobalt-phosphorus ternary alloy modified nanoporous copper, specifically comprising the following steps:
[0060] (1) Platinum plating on the counter electrode of the standard integrated three electrodes;
[0061] (2) modify silver-silver chloride on the reference electrode of the standard integrated three electrodes;
[0062] (3) Electrodeposit a copper layer on the working electrode of the standard integrated three electrodes;
[0063] (4) Gold-tin alloy is electrodeposited on the front of the working electrode, and then metal tin is removed to obtain an electrode modified with nanoporous copper;
[0064] (5) A ternary alloy compound or a cobalt phosphorus compound doped with rare earths and cobalt phosphorus is electrodeposited on the front of the working electrode to obtain a Co-M-P / NPC modified flexible non-enzyme glucose sensing electrode.
[0065] Further, in step (1), th...
Embodiment 1
[0074] M = blank, preparation of Co-M-P / NPC composite electrode:
[0075] (1) The counter electrode of the standard integrated three-electrode is connected separately, and the standard platinum electrode is used as the counter electrode, so that it is electrodeposited at the potential of -0.4V for 15 minutes, and the platinum plating solution is composed of H 2 PtCl 6 1 mM and KCl 0.1M.
[0076] (2) Connect the reference electrode of the standard integrated three-electrode separately, and use the silver wire electrode as the counter electrode to make it work at 25°C with a current density of 0.3A / dm 2 The silver plating-silver chloride solution is composed of: silver nitrate 40g / L, sodium thiosulfate 200g / L, potassium metabisulfite 40g / L, ammonium acetate 20g / L, thiosemicarbazide 0.6g / L.
[0077] (3) Wash, degrease, and wash the standard integrated three-electrode modified counter electrode and reference electrode, and then connect the working electrode separately, use it ...
Embodiment 2
[0084] Preparation of M=La, Co-M-P / NPC composite electrode:
[0085] (1) The counter electrode of the standard integrated three-electrode is connected separately, and the standard platinum electrode is used as the counter electrode, so that it is electrodeposited at the potential of -0.4V for 15 minutes, and the platinum plating solution is composed of H 2 PtCl 6 1 mM and KCl 0.1M.
[0086] (2) Connect the reference electrode of the standard integrated three-electrode separately, and use the silver wire electrode as the counter electrode to make it work at 25°C with a current density of 0.3A / dm 2 The silver plating-silver chloride solution is composed of: silver nitrate 40g / L, sodium thiosulfate 200g / L, potassium metabisulfite 40g / L, ammonium acetate 20g / L, thiosemicarbazide 0.6g / L.
[0087] (3) Wash, degrease, and wash the standard integrated three-electrode modified counter electrode and reference electrode, and then connect the working electrode separately, use it as th...
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