4.3 Review

Nanomaterials in bioelectrochemical devices: on applications enhancing their positive effect

Journal

3 BIOTECH
Volume 12, Issue 9, Pages -

Publisher

SPRINGER HEIDELBERG
DOI: 10.1007/s13205-022-03260-w

Keywords

Nanomaterials; Electrochemical devices; Biosensor; Biofuel cell; Analytical parameters; Biocatalyst

Funding

  1. Ministry of Education and Science of the Russian Federation [FEWG-2020-008]

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This review discusses the potential of nanomaterials in improving the basic parameters of bioelectrochemical systems, including sensitivity increase, detection lower-limit decrease, detection-range change, lifetime increase, and substrate-specificity control. The application of nanomaterials enhances the functioning efficiency of these devices and expands their spheres of use.
Electrochemical biosensors and biofuel cells are finding an ever-increasing practical application due to several advantages. Biosensors are miniature measuring devices, which can be used for on-the-spot analyses, with small assay times and sample volumes. Biofuel cells have dual benefits of environmental cleanup and electric energy generation. Application of nanomaterials in biosensor and biofuel-cell devices increases their functioning efficiency and expands spheres of use. This review discusses the potential of nanomaterials in improving the basic parameters of bioelectrochemical systems, including the sensitivity increase, detection lower-limit decrease, detection-range change, lifetime increase, substrate-specificity control. In most cases, the consideration of the role of nanomaterials links a certain type of nanomaterial with its effect on the bioelectrochemical device upon the whole. The review aims at assessing the effects of nanomaterials on particular analytical parameters of a biosensor/biofuel-cell bioelectrochemical device.

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