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A review on preparation and characterization of silver/nickel oxide nanostructures and their applications

Absi, Eman and Saleh, Muneer and Al-Hada, Naif Mohammed and Hamzah, Khaidzir and Alhawsawi, Abdulsalam M. and Banoqitah, Essam M. (2021) A review on preparation and characterization of silver/nickel oxide nanostructures and their applications. Applied Physics A: Materials Science and Processing, 127 (12). pp. 1-32. ISSN 0947-8396

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Official URL: http://dx.doi.org/10.1007/s00339-021-05079-3

Abstract

Nickel oxide and silver oxide nanoparticles have wonderful properties that could be employed in numerous applications. Thus, synthesis of nickel silver oxide nanostructures with different characteristics is of great interest. In this review, many synthesis methods were reported such as: electrodeposition, electrochemical method, simple immersion process and subsequent RFsputtering deposition, chemical oxidative polymerization, followed by acidic sol–gel process, flame-based process, liquidphase reduction technique, sol–gel, hydrothermal method, co-precipitation method, simple precipitation method, thermal decomposition, chemical wet synthesis, low and high-temperature reduction, high-pressure autoclave, thermal treatment method, and laser-liquid–solid interaction technique. Reporting all methods employed for the fabrication of NiO and Ag2O nanostructures is useful to produce and develop novel nanomaterials with enhanced properties and applications. Studying the factors that tuned their properties: particle size, shape, and capping agents as well as solution pH is highly recommended in future works. Also, further research studies should be conducted for finding another/other facile and effective synthesis method/methods.

Item Type:Article
Uncontrolled Keywords:Metal oxide nanoparticles, Silver/nickel oxide nanostructures, Structural properties, Optical properties, Applications
Subjects:Q Science > QC Physics
Divisions:Science
ID Code:97557
Deposited By: Widya Wahid
Deposited On:18 Oct 2022 02:13
Last Modified:18 Oct 2022 02:13

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