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Unpredicted Nucleation of Extended Zinc Blende Phases in Wurtzite ZnO Nanotetrapod Arms

Academic Article
Publication Date:
2009
abstract:
Tailoring the structural and electronic properties of 3D nanostructures via bottom-up techniques would pave the way for novel low-cost applications. One of such possibilities is offered by ZnO branched nanostructures like tetrapods, that have recently attracted attention for nanodevice applications from nanoelectronics to drug delivery. The conventional picture is that ZnO arms are thermodynamically stable only in the wurtzite phase. Here, we provide the first experimental evidence of unpredicted extended zinc blend phases (50-60 nm long) embedded in the arms of ZnO wurtzite tetrapods. In particular, decisive evidence is obtained from the one-to-one correlation between high lateral resolution cathodoluminescence spectroscopy, monochromatic contrast maps, and atomic resolution transmission electron microscopy images of ZnO single TIPS. This observation is not specific to ZnO and can have a general validity for the understanding of the nucleation mechanisms in semiconducting 3D nanostructures for device applications.
Iris type:
01.01 Articolo in rivista
Keywords:
zinc oxide; tetrapods; cubic phase; cathodoluminescence; HRTEM
List of contributors:
Fabbri, Filippo; Lazzarini, Laura; Zha, Mingzheng; Zappettini, Andrea; Calestani, Davide; Salviati, Giancarlo
Authors of the University:
CALESTANI DAVIDE
FABBRI FILIPPO
ZAPPETTINI ANDREA
Handle:
https://iris.cnr.it/handle/20.500.14243/41119
Published in:
ACS NANO
Journal
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