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Preparation of Nanomaterial Modified Electrode and Its Sensing Application

Preparation of Nanomaterial Modified Electrode and Its Sensing Application

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This book focuses on nanomaterials and strategies to fabricate the electrode for electrochemistry-based sensors. Excellent nanomaterials are essential for high-performance electrochemical sensors, while strategies for controllable assembly of nanomaterials on the electrode and the fabrication of sensing devices can be also important. This book covers the preparation of nanomaterials (magnesium phyllosilicate, metal–organic frameworks (MOF), and covalent–organic frameworks (COF), the fabrication of electrodes with unique several attracting properties (e.g., transparency) using carbon nanomaterials or novel nanotechnologies, and applications of electrochemical sensors.

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Keywords

  • adenosine triphosphate luminescence
  • AG
  • amino-functionalized clay
  • analytical methods
  • binding energies
  • biofouling
  • Biosensors
  • carbon materials
  • contact point
  • copper cobalt sulfide
  • covalent organic frameworks
  • defect
  • DFT
  • DFTB
  • disposable immunosensor
  • electrocatalysts
  • electrochemical biosensors
  • electrochemical detection
  • electrochemical sensing
  • electrochemical sensor
  • glassy carbon electrode
  • Graphene
  • graphene oxide
  • graphene oxide (GO)
  • graphene transparent electrode
  • H2O2
  • Hybridization
  • hydrazine
  • layer-by-layer
  • Mathematics & science
  • micro electrochemical sensor
  • multi-analyte detection
  • n/a
  • nanochannel array
  • nanomaterial
  • nanomaterials
  • nanoprobe
  • nitrogen doped carbon
  • nitrophenol
  • nonenzymatic glucose sensing
  • oxo functionalities
  • pathogen heat-treatment
  • patterned ITO electrode
  • Pb(II) detection
  • PDMS
  • peptide
  • PH
  • Physics
  • porous structures
  • prostate-specific antigen
  • reduced glutathione
  • Reference, information & interdisciplinary subjects
  • Research & information: general
  • self-assembly
  • sol–gel processing
  • streptavidin
  • stretchable electrodes
  • Surface functionalization
  • SWCNT
  • talc-like clay
  • transparent electrode
  • tunneling effect
  • water bioremediation

Links

DOI: 10.3390/books978-3-0365-5972-8

Editions

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