The effect of different thickness alumina capping layers on the final morphology of dewet thin Ni films

Nanoparticles on a substrate have numerous applications in nanotechnology, from enhancements to solar cell efficiency to improvements in carbon nanotube growth. Producing nanoparticles in a cost effective fashion with control over size and spacing is desired, but difficult to do. This work presents...

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Veröffentlicht in:Applied physics. A, Materials science & processing Materials science & processing, 2018-03, Vol.124 (3), p.1-7, Article 233
Hauptverfasser: White, Benjamin C., Behbahanian, Amir, Stoker, T. McKay, Fowlkes, Jason D., Hartnett, Chris, Rack, Phillip D., Roberts, Nicholas A.
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Sprache:eng
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Zusammenfassung:Nanoparticles on a substrate have numerous applications in nanotechnology, from enhancements to solar cell efficiency to improvements in carbon nanotube growth. Producing nanoparticles in a cost effective fashion with control over size and spacing is desired, but difficult to do. This work presents a scalable method for altering the radius and pitch distributions of nickel nanoparticles. The introduction of alumina capping layers to thin nickel films during a pulsed laser-induced dewetting process has yielded reductions in the mean and standard deviation of radii and pitch for dewet nanoparticles with no noticeable difference in final morphology with increased capping layer thickness. The differences in carbon nanotube mats grown, on the uncapped sample and one of the capped samples, is also presented here, with a more dense mat being present for the capped case.
ISSN:0947-8396
1432-0630
DOI:10.1007/s00339-018-1644-z