Size-controlled electrodeposition of Cu nanoparticles on gas diffusion electrodes in methanesulfonic acid solution
Autor: | Sara Bals, L. Pacquets, Nick Daems, Tom Breugelmans, Sander Neukermans, Erdem Irtem |
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Rok vydání: | 2020 |
Předmět: |
Materials science
Gas diffusion electrode Physics General Chemical Engineering Nucleation 02 engineering and technology Surface finish 010402 general chemistry 021001 nanoscience & nanotechnology 01 natural sciences Homogeneous distribution 0104 chemical sciences Chemistry Chemical engineering Materials Chemistry Electrochemistry Gaseous diffusion Particle Particle size 0210 nano-technology Particle density Biology Engineering sciences. Technology |
Zdroj: | Journal of applied electrochemistry |
ISSN: | 1572-8838 0021-891X |
Popis: | In this paper electrodeposition is used to obtain Cu nanoparticles, as it allows good control over particle size and distribution. These Cu particles were deposited onto a gas diffusion electrode which increased the resulting surface area. Prior to deposition, the surface was pre-treated with NaOH, HNO3, MQ and TX100 to investigate the influence on the electrodeposition of Cu on the gas diffusion electrode (GDE). When using HNO3, the smallest particles with the most homogeneous distribution and high particle roughness were obtained. Once the optimal substrate was determined, we further demonstrated that by altering the electrodeposition parameters, the particle size and density could be tuned. On the one hand, increasing the nucleation potential led to a higher particle density resulting in smaller particles because of an increased competition between particles. Finally, the Cu particle size increased when applying a greater growth charge and growth potential. This fundamental study thus opens up a path towards the synthesis of supported Cu materials with increased surface areas, which is interesting from a catalytic point of view. Larger surface areas are generally correlated with a better catalyst performance and thus higher product yields. This research can contributed in obtaining new insides into the deposition of metallic nanoparticles on rough surfaces. |
Databáze: | OpenAIRE |
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