This work proposes a microwave-based synthetic route for the preparation of tin nanospheres with a diamond-like alpha-phase structure on silicon. The main characteristics of the synthesized material are an extraordinarily narrow (around 50 meV) direct bandgap and an improved thermal stability (up to 200 degrees C). Structural and compositional characterizations showed a core-shell structure comprised of an outer amorphous oxide shell and inner core containing alpha-phase tin domains. Microwaves turned out to be instrumental in achieving the specific nanostructures reported, due to their peculiar heating characteristics. Low pressure, low temperature and compatibility with integrated circuits manufacturing represent the most innovative features of the present synthetic process. (C) 2022 Published by Elsevier Ltd.
Microwave driven synthesis of narrow bandgap alpha-tin nanoparticles on silicon
A. Gasparotto;E. Cattaruzza;M. Vitiello;
2022
Abstract
This work proposes a microwave-based synthetic route for the preparation of tin nanospheres with a diamond-like alpha-phase structure on silicon. The main characteristics of the synthesized material are an extraordinarily narrow (around 50 meV) direct bandgap and an improved thermal stability (up to 200 degrees C). Structural and compositional characterizations showed a core-shell structure comprised of an outer amorphous oxide shell and inner core containing alpha-phase tin domains. Microwaves turned out to be instrumental in achieving the specific nanostructures reported, due to their peculiar heating characteristics. Low pressure, low temperature and compatibility with integrated circuits manufacturing represent the most innovative features of the present synthetic process. (C) 2022 Published by Elsevier Ltd.File | Dimensione | Formato | |
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