Data di Pubblicazione:
2013
Abstract:
We demonstrate that highly porous ZnO nanobelts can be prepared by thermally decomposing ZnS(en)0.5 hybrid nanobelts (NBs) synthesized through a solvothermal route using Zn layers deposited on alumina substrates as both the Zn substrate and source. Hybrid decomposition by thermal annealing at 400°C gives porous ZnS NBs that are transformed by further annealing at 600°C into wurtzite single crystal ZnO nanobelts with an axial direction of [0001]. The evolution of the morphological and structural transformation ZnS(en)0.5 -> ZnS -> ZnO is investigated at the nanoscale by transmission and scanning electron microscopy analyses. Control of the ZnO NB distributions by patterning the Zn metallization on alumina is achieved as a consequence of the parent hybrid NB patterned growth. The presence of NBs on alumina in a ~100 ?m wide region between Zn stripes allows us to fabricate two contact devices where contact pads are electrically connected through a porous ZnO NB entanglement. Such devices are suitable for employment in photodetectors as well as in gas and humidity sensors.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
Mesoporous; Nano scale; Patterned growth; Solvothermal route; ZnO
Elenco autori:
Fabbri, Filippo; Licci, FRANCESCA GLORIA; Fedeli, Paolo; Besagni, Tullo; Ferro, Patrizia; Nasi, Lucia; Calestani, Davide; Mosca, Roberto
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