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  1. Home
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  5. Fabrication and characterizations of Al nanoparticles doped ZnO nanostructures-based integrated electrochemical biosensor
 
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Fabrication and characterizations of Al nanoparticles doped ZnO nanostructures-based integrated electrochemical biosensor

Journal
Journal of Materials Research and Technology
ISSN
22387854
Date Issued
2020-01-01
Author(s)
Gherab K.
Universiti Malaysia Perlis
AI-Douri Y.
Universiti Malaya
Uda Hashim
Universiti Malaysia Perlis
Ameri M.
Université Djilali Liabès de Sidi Bel-Abbès, Algeria
Bouhemadou A.
University of Setif, Algeria
Batoo K.M.
King Saud University, Saudi Arabia
Adil S.F.
King Saud University, Saudi Arabia
Khan M.
King Saud University, Saudi Arabia
Raslan E.H.
King Saud University, Saudi Arabia
DOI
10.1016/j.jmrt.2019.11.025
Handle (URI)
https://hdl.handle.net/20.500.14170/5373
Abstract
The benefits of the electrical-based biosensor include cheap production and fast response time of detecting diseases. An interdigitated electrode (IDE) is fabricated using silver (Ag) as a metal contact that is deposited on aliminium (Al) nanoparticles doped with both zinc oxide (ZnO) and Silicon (Si) forming AZO/Si nanostructures by vacuum coater in a thermal evaporator. The electrical properties are studied as a function of frequency and voltage using I-V characteristics. Sol-gel method under annealing temperature, 500 ◦C is utilized to generate Al nanoparticles doped ZnO nanostructures. UV-vis spectrophotometer, Atomic Force Microscopy (AFM), Scanning Electron Microscopy (SEM) and X-ray diffractometer (XRD) are used for analyzing optical, topographical, morphological and structural studies of AZO nanostructure, respectively. Specific empirical models of optical dielectric constant, bulk modulus and refractive index are also verified.
Funding(s)
Deanship of Scientific Research, King Saud University
Subjects
  • AZO

  • Characterization

  • Optical

  • Sol-gel method

File(s)
Fabrication and characterizations of Al nanoparticles doped ZnO nanostructures-based integrated electrochemical biosensor.pdf (2.88 MB)
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