Biosensor surface modified based on Ti3C2Tx and preparation method and application thereof
A biosensing and sensor-based technology, applied in the field of Ti3C2Tx-based biosensing surface and its preparation, can solve the problems of low adsorption capacity and inability to analyze biomolecular interactions, so as to meet the detection requirements and improve the detection ability , the effect of convenient operation
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Embodiment 1
[0025] This embodiment provides a Ti-based 3 C 2 T X Methods for the preparation of modified biosensing surfaces, such as figure 1 shown, including:
[0026] (1) 1g LiF is completely dissolved in 20ml 9M HCl to prepare etching solution;
[0027] (2) 1g Ti 3 AlC 2 Gradually add to the etching solution, and react at 35°C for 24 hours;
[0028] (3) The resulting acidic product was repeatedly washed with deionized water and centrifuged at 3500rpm for 5 minutes until a stable dark green Ti 3 C 2 T x Sheet suspension. At this point, the pH of the solution is ≥ 6; then add deionized water to the precipitate and shake it by hand for 5 minutes to separate the flakes. After 1 hour of sonication, the resulting solution was centrifuged at 3500 rpm for 1 hour to obtain Ti 3 C 2 T x supernatant;
[0029] (4) Immerse the substrate coated with 50nm gold film into Ti 3 C 2 T x Saturated solution, reacted at 4°C for 60 hours, due to electrostatic interaction, Ti 3 C 2 T x Wi...
Embodiment 2
[0031] This embodiment provides a potential modulation type total internal reflection biosensor, which includes the Ti-based 3 C 2 T x Modified biosensing surfaces.
Embodiment 3
[0033] This example provides a method for detecting arginine using the potential-modulated total internal reflection biosensor obtained in Example 2, specifically: during detection, a voltage of -50mV is applied to the sensing surface to increase the adsorption of arginine on the surface .
[0034] After testing, compared with the traditional arginine detection method, using the method described in Example 3 can increase the detection limit of arginine by 100 times.
[0035] The specific detection principle is as figure 2 shown.
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