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Titlebook: Nanomaterial-Modified Electrodes; Design and Applicati Aftab Aslam Parwaz Khan,Raviraj M. Kulkarni,Abdull Book 2024 The Editor(s) (if appli

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Modified Carbon Nanotubes-Based Electrodes for Sensing Biomolecules and Pharmaceutical Compounds,ecules and pharmaceutical compounds. Beginning with an overview of carbon materials-based electrodes, the discussion looks into the distinct properties of 3-D-ordered mesoporous carbon, 2-D carbon materials (graphene, graphene oxide, reduced graphene oxide, and carbon nitride), 1-D carbon nanotubes,
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Modified Nanomaterials-Based Electrode for the Detection of Heavy Metals in Water,tive and effective technologies for heavy metal detection and monitoring. Due to their distinct physicochemical characteristics, nanomaterials have recently become recognized as attractive alternatives for sensor systems. This study describes a novel method for the detection of heavy metals in water
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Polymer Nanocomposites-Based Electrodes for the Detection of Pharmaceutical Compounds,n the pharmaceutical business. There is a sudden demand for precise, sensitive, versatile, portable, cost-effective devices for tracking patient overdosing and checking surrounding water sources as well as wastewater for pharmaceutical contaminants, in addition to quality control needed for pharmace
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,Nanomaterials’ Modified Electrodes for Nucleic Acid Biosensing, play a very important role in how sensors work. As well as improving the sensitivity, nanomaterials are helpful in immobilizing aptamers due to their conductivity. For the diverse applications in biosensing, allotropic nanomaterials are developed as suitable components, and the morphology is import
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