Anton Salomon, Tilo Bu ¨ ttner
Nickel and nickel alloy foams are excellent substrate materials for energy and chemical technology. This research aims to enhance the performance of nickel foams through surface modification tailored to specific applications such as electrolysis and wastewater treatment. The methodology involves powder metallurgical deposition of coatings using various techniques, notably the Scattering Technique and Wet Powder Spraying, which yield different foam strut morphologies and surface structures. The study presents results showing how these modifications can significantly influence the performance of the foams in catalytic processes, including the formation of Raney-Nickel. The formation of inter-metallic phases on the foam surface is explored as a crucial factor for application efficiency. Additionally, the impact of surface enhancement, alloying, and heat treatment, as necessary steps in stabilizing the alloyed foams, is discussed. These findings demonstrate that tailored surface properties can optimize nickel foams for diverse applications in energy and chemical technologies.
@article{bb76b0f4-c200-492b-85f8-25f8fe0ec4b9,
title={2026 Salomon Nickel Foam Surface Modification},
author={Anton Salomon and Tilo Bu ¨ ttner},
year={2026},
language={en}
}TY - JOUR TI - 2026 Salomon Nickel Foam Surface Modification AU - Anton Salomon AU - Tilo Bu ¨ ttner PY - 2026 LA - en ER -
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