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- - METHOD OF ENZYME-INORGANIC HYBRID NANOFLOWERS BASED ON ACTIVATED CARBON FIBER AND GLUCOSE FUEL CELL USING THE ENZYME-INORGANIC HYBRID NANOFLOWERS BASED ON ACTIVATED CARBON FIBER
- - METHOD OF ENZYME-INORGANIC HYBRID NANOFLOWERS BASED ON ACTIVATED CARBON FIBER AND GLUCOSE FUEL CELL USING THE ENZYME-INORGANIC HYBRID NANOFLOWERS BASED ON ACTIVATED CARBON FIBER
The present invention modifies the activated carbon fiber by introducing a functional group to the surface of the activated carbon fiber, and attaches an enzyme to the functional group on the surface of the modified activated carbon fiber to generate crystal nuclei on the surface of the activated carbon fiber, and the crystal nuclei are generated Activated carbon fibers that form enzyme-inorganic hybrid nanoflowers on the surface of activated carbon fibers by putting the activated carbon fibers into an enzyme solution containing enzymes, adding copper sulfate, and incubating to grow the crystal nuclei. It relates to a method for manufacturing a nano-flower based enzyme-inorganic complex. This activated carbon fiber-based enzyme-inorganic composite nano flower can maximize the performance of the enzyme so that it has high power efficiency through bioelectrochemical reaction, and uses three types of enzymes such as glucose oxidase, lactase, and catalase. By using the activated carbon fiber-based enzyme-inorganic composite nano-flower produced by this process for the electrode composition of the glucose fuel cell, it is possible to construct a glucose fuel cell that can be used for a long time by realizing excellent enzyme activity.
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