Modified ITO electrode for improving electricity production efficiency of electricity producing bacteria and preparation method thereof
A technology of electrogenic bacteria and electrical efficiency, applied in the field of bioelectrochemical sensors, which can solve the problems of electrodes affecting electron transfer efficiency
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Embodiment 1I
[0031] The modification of embodiment 1ITO electrode
[0032] (1) Modification of phage
[0033] 1. The plate culture of phage is carried out on a double-layer plate, and the formula is as follows:
[0034]
[0035] SolA solution was sterilized at 121° C. for 20 minutes and solB was added to prepare a 1.5% medium. Similarly, if the amount of agar added was 7.6 g, a 0.8% medium was prepared. First pour 1.5% culture medium on the bottom of the plate, after it cools and solidifies, then mix the M13 bacterial solution with 0.8% culture medium and pour it into the upper part of the plate, after solidification, invert the plate, overnight at 30°C, and grow the next day Plaque. Then pick the colony in the LB medium of E.coil, shake it overnight at 30°C to obtain the amplified M13 phage, and its concentration can be obtained by reading the ultraviolet absorption at 269nm (the extinction coefficient is 3.84). In the experiment, it was measured as 140mg / ml.
[0036] 2. Prepare a ...
Embodiment 2M13
[0049] The connection of embodiment 2M13 phage directly with ITO
[0050] Mix 10ul of M13 phage solution with 990ul of 80% PBS, spread evenly on the ITO glass slide, and carry out the measurement of the electrochemical experiment, the steps are the same as above
Embodiment 3 2
[0051] The connection of embodiment 3 ferrocene formaldehyde and ITO
[0052] Take 700ul of the ferrocene formaldehyde solution in step 2 of Example 1, mix it with 400ul of the solution in step 3, react at room temperature for 1h, and carry out the experiment according to the previous steps.
[0053] All experimental results are as follows:
[0054] image 3 It can be seen that among the three modified ITO electrodes, M13 and ferrocene mixed solution have the best electrical signal, and the I-t image has an obvious peak, reaching 35uA,, and when only M13 or ferrocene is connected , the current is basically unchanged and maintained within 5uA. It can be seen that the modified electrode can promote the adsorption of Shewanella, thereby facilitating its electron transfer. The reason may be that the virus promotes the adsorption of electrogenic bacteria, and then transfers electrons to the ITO electrode through ferrocene to generate electrical signals. When there is only M13 o...
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