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- W4200620024 abstract "Graphene (GN)/nanoparticles (NPs) composite holds an excellent transducer for electrochemical biosensor applications, since the electronic structures of both favors to target bio-sensing of even nano-molar quantity level of bio-analytes. The band engineering and outer shell electronic design of GN nanocomposite provides a unique tool for detection of bio-analytes than nano-crystalline semiconductors compared to that of other traditional techniques. The magnitude of redox property of GN nanocomposite caused for converting chemical energy into a measurable signal through electrochemical process. For a healthy society, the detection of essential biological molecule/bio-analytes in the field of pharmaceuticals, clinical, food beverage, human body, and environment in a sub-nanomolar range plays a challenging role to the current science. In this platform of bio-sensing, three main methods are used: (a) Photoelectrochemical; (B) electrochemical; and (c) optical sensor with each has its own advantage and disadvantage. Among these, the electrochemical bio-sensing by GN-nanoparticle hybrids 246composite have achievable sensitivities and selectivity compared to others. Because of its fascinating electronic, optical, and mechanical properties, GN nanocomposite acts a prominent transducer for electrochemical detection of bio-analytes like NADH, hydrogen peroxide ( H2O2 ), glucose, uric acid (UA), ascorbic acid (AA) and nitrate in a sub- nano-molar range. This chapter covers the advantages of GN-supported NPs for electrochemical bio-sensing towards the detection of various bio-analytes." @default.
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- W4200620024 date "2021-12-15" @default.
- W4200620024 modified "2023-10-16" @default.
- W4200620024 title "Nanoparticles: A Noble Metal for Ultrasensitive Electrochemical Biosensing Affinity" @default.
- W4200620024 doi "https://doi.org/10.1201/9781003199304-8" @default.
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