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Titlebook: Enzyme and Microbial Biosensors; Techniques and Proto Ashok Mulchandani,Kim R. Rogers Book 1998 Humana Press 1998

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https://doi.org/10.1007/978-3-030-59785-6 problems associated with the design of mediated-enzyme biosensors that involves the application of an electron-transfer relay which shuttles the electrons from the active center of the redox enzyme to the electrode surface at a measurable rate.
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Suresh Chandra Babu,Mahika Shishodiaaniline, andpolymdole show distinct advantages over nonconducting polymers because they can be electrochemically grown exclusively on the surface of an electrode. Several reviews summarizing this research area have been published in the last few years (.–.).
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Enzyme Biosensors Based on ISFETs circuits and ion-sensitive electrodes. Bergeveld (.) introduced the ISFET as a new device that combines the chemical-sensitive properties of glass-membrane electrodes with the impedance-converting characteristics of the metal-oxidesemiconductor field-effect-transistor (MOSFET).
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Enzyme Biosensors Based on Oxygen Detectioninciple of enzyme electrodes. Since this time more than 30 different oxygen-consuming enzymes have been combined with the membrane-covered oxygen electrode. The experimental requirements of this combination are quite simple.
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Enzyme Biosensors Based on Mediator-Modified Carbon Paste Electrodeermination and subsequent commercialization. The amperometric enzyme biosensors (.–.) are one member of the efficient category of chemical sensors in which the mode of signal transduction depends upon the electrochemical processes. The aim of this chapter is to outline the technique involved and the
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