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- W2810235623 abstract "Abstract Graphene nanomaterials have received an enormous amount of attention for their technological applications in biosensing, due to advantages such as good sensing ability, excellent mechanical, thermal, and electrical properties, large surface-area-to-volume ratio, and biocompatibility. The present chapter describes recent trends in and future applications of the development of miniaturized amperometric and potentiometric biosensors by integrating “receptors” (i.e., enzymes, antibodies, and natural receptors) in graphene nanoelectrodes. The latest trends are related to the application of these systems to rapidly detecting clinically important substrates, such as glucose, urea, uric acid, cholesterol, etc. The presented biosensors exhibit good reproducibility, reusability, selectivity, rapid response times, long shelf life, and high sensitivity, while not suffering from interference by coexisting oxidable substances. The electrochemical nanobiosensors are prepared through the integration of biomolecules with graphene and have demonstrated capabilities to compare with conventional platforms. Miniaturization, reagent-less biosensing, and single-molecule detection are their obvious advantages. This chapter highlights the significant milestones already achieved and elucidates emerging trends in this area." @default.
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- W2810235623 date "2018-01-01" @default.
- W2810235623 modified "2023-09-26" @default.
- W2810235623 title "Nanobiosensors Based on Graphene Electrodes: Recent Trends and Future Applications" @default.
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- W2810235623 doi "https://doi.org/10.1016/b978-0-08-101971-9.00007-7" @default.
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