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Synthesis of Copper, Silver, and Copper–Silver Powders via Ultrasonic Spray Pyrolysis and Hydrogen Reduction

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dc.contributor.author Faye, Mame Haicha
dc.date.accessioned 2026-02-12T11:53:18Z
dc.date.available 2026-02-12T11:53:18Z
dc.date.issued 2025-09-23
dc.identifier.uri http://197.159.135.214/jspui/handle/123456789/1038
dc.description A Thesis submitted to the West African Science Service Centre on Climate Change and Adapted Land Use, the Université Felix Houphouët-Boigny, Cote d’Ivoire, and the Jülich Forschungszentrum in partial fulfillment of the requirements for the International Master Program in Renewable Energy and Green Hydrogen (Green Hydrogen Production and Technology) en_US
dc.description.abstract This thesis investigates the synthesis of copper (Cu), silver (Ag), and copper–silver (Cu-Ag) powders via ultrasonic spray pyrolysis (USP) and hydrogen reduction, focusing on how gas atmosphere, reduction temperature, and precursor ratio affect their morphology, particle size, purity, and stability. Understanding these parameters is important because they control how nanoparticles form, which affects their conductivity, catalytic activity, and resistance to oxidation. These properties are very important for many uses, such as making conductive inks and printed circuits for electronics, catalysts for chemical and energy processes, and protective coatings that stop corrosion or kill germs. In this work, four solutions were made using copper nitrate trihydrate and silver nitrate, then sprayed in a USP reactor and reduced under hydrogen and argon at temperatures between 500 °C and 700 °C. The powders made were studied with SEM and ImageJ to see their size and shape, and EDS to check their composition. The results show that the gas atmosphere had a strong effect on the particle size and shape. Hydrogen made particles more pure but also bigger and less uniform for silver, while argon gave more and smaller particles that looked more similar. For copper, using 600 °C and 650 °C made even smaller ones but with more clumping, which could help in catalytic use. For the Cu-Ag powders, the ratio of the two metals affected how stable the powders were: a 1:1 ratio gave small, uniform, core-shell particles without oxidation, while a 1:3 ratio caused clumping and surface oxidation. This work shows that gas type, temperature, and metal ratio are key to controlling the final powders with tunable surfaces and better stability. en_US
dc.description.sponsorship The Federal Ministry of Research, Technology and Space (BMFTR) en_US
dc.language.iso en en_US
dc.publisher WASCAL en_US
dc.subject Ultrasonic Spray Pyrolysis en_US
dc.subject Hydrogen Reduction en_US
dc.subject Nanoparticles en_US
dc.subject Bimetallic powders en_US
dc.subject Gas atmosphere en_US
dc.subject Precursor ratio en_US
dc.subject Reduction temperature en_US
dc.title Synthesis of Copper, Silver, and Copper–Silver Powders via Ultrasonic Spray Pyrolysis and Hydrogen Reduction en_US
dc.type Thesis en_US


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