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Title
Multifunctional Nanostructures and Nanopocket Particles Fabricated by Nanoimprint Lithography
Language
English
Description (en)
Nanostructured surfaces and nanoparticles are already widely employed in many different fields of research, and there is an ever-growing demand for reliable, reproducible and scalable nanofabrication methods. This is especially valid for multifunctional nanomaterials with physical properties that are tailored for specific applications. Here, we report on the fabrication of two types of nanomaterials. Specifically, we present surfaces comprising a highly uniform array of elliptical pillars as well as nanoparticles with the shape of nanopockets, possessing nano-cavities. The structures are fabricated by nanoimprint lithography, physical and wet-chemical etching and sputter deposition of thin films of various materials to achieve a multifunctional nanomaterial with defined optical and magnetic properties. We show that the nanopockets can be transferred to solution, yielding a nanoparticle dispersion. All fabrication steps are carefully characterized by microscopic and optical methods. Additionally, we show optical simulation results that are in good agreement with the experimentally obtained data. Thus, this versatile method allows to fabricate nanomaterials with specific tailor-made physical properties that can be designed by modelling prior to the actual fabrication process. Finally, we discuss possible application areas of these nanomaterials, which range from biology and medicine to electronics, photovoltaics and photocatalysis.
Keywords (en)
nanoimprint lithography
Keywords (en)
nanostructure
Keywords (en)
nanocavity
DOI
10.3390/nano9121790
Author of the digital object
Stefan  Schrittwieser  (AIT Austrian Institute of Technology)
Michael J.  Haslinger  (PROFACTOR GmbH)
Tina  Mitteramskogler  (PROFACTOR GmbH)
Astrit  Shoshi  (University for Continuing Education Krems)
Hubert  Brückl  (University for Continuing Education Krems)
and others
16.12.2019
Format
application/pdf
Size
5.6 MB
Licence Selected
CC BY 4.0 International
Name of Publication (de)
Nanomaterials
Publisher
MDPI
Content
Details
Uploader
Object type
PDFDocument
Format
application/pdf
Created
06.05.2022 10:11:57
Metadata
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