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Electroless formation of silver nanoaggregates: an experimental and molecular dynamics approach
Authors:F Gentile  M Monteferrante  A Toma  ML Coluccio  G Ciccotti
Institution:1. BioNEM (Bio Nano Engineering and Technology for Medicine), Department of Experimental and Clinical Medicine, University Magna Graecia of Catanzaro, Catanzaro, Italy;2. Department of Nanostructures, Istituto Italiano di Tecnologia, Genova, Italy;3. Consiglio Nazionale delle Ricerche, Istituto di Chimica del Riconoscimento Molecolare (ICRM), Milan, Italy;4. Department of Nanostructures, Istituto Italiano di Tecnologia, Genova, Italy;5. Department of Physics, University of Rome ‘La Sapienza’, Rome, Italy
Abstract:The ability to manipulate matter to create non-conventional structures is one of the key issues of material science. The understanding of assembling mechanism at the nanoscale allows us to engineer new nanomaterials, with physical properties intimately depending on their structure.

This paper describes new strategies to obtain and characterise metal nanostructures via the combination of a top-down method, such as electron beam lithography, and a bottom-up technique, such as the chemical electroless deposition. We realised silver nanoparticle aggregates within well-defined patterned holes created by electron beam lithography on silicon substrates. The quality characteristics of the nanoaggregates were verified by using scanning electron microscopy and atomic force microscopy imaging. Moreover, we compared the experimental findings to molecular dynamics simulations of nanoparticles growth. We observed a very high dependence of the structure characteristics on the pattern nanowell aspect ratio. We found that high-quality metal nanostructures may be obtained in patterns with well aspect ratio close to one, corresponding to a maximum diameter of 50 nm, a limit above which the fabricated structures become less regular and discontinuous. When regular shapes and sizes are necessary, as in nanophotonics, these results suggest the pattern characteristics to obtain isolated, uniform and reproducible metal nanospheres.
Keywords:metal nanoparticles  superclusters  electroless deposition  molecular dynamics simulations  nanoscale systems
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