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Electrical Properties of Self-Assembled Nano-Schottky Diodes

Academic Article
Publication Date:
2008
abstract:
A bottom-up methodology to fabricate a nanostructured material by Au nanoclusters on 6H-SiC surface is illustrated. Furthermore, a methodology to control its structural properties by thermal-induced self-organization of the Au nanoclusters is demonstrated. To this aim, the self-organization kinetic mechanisms of Au nanoclusters on SiC surface were experimentally studied by scanning electron microscopy, atomic force microscopy, Rutherford backscattering spectrometry and theoretically modelled by a ripening process. The fabricated nanostructured materials were used to probe, by local conductive atomic force microscopy analyses, the electrical properties of nano-Schottky contact Au nanocluster/SiC. Strong e. orts were dedicated to correlate the structural and electrical characteristics: the main observation was the Schottky barrier height dependence of the nano-Schottky contact on the cluster size. Such behavior was interpreted considering the physics of few electron quantum dots merged with the concepts of ballistic transport and thermoionic emission finding a satisfying agreement between the theoretical prediction and the experimental data. The fabricated Au nanocluster/SiC nanocontact is suggested as a prototype of nano-Schottky diode integrable in complex nanoelectronic circuits. Copyright (C) 2008 F. Rufino et al.
Iris type:
01.01 Articolo in rivista
Keywords:
FILMS
List of contributors:
Grimaldi, MARIA GRAZIA; Ruffino, Francesco; Canino, Andrea; Raineri, Vito; Roccaforte, Fabrizio; Giannazzo, Filippo
Authors of the University:
GIANNAZZO FILIPPO
ROCCAFORTE FABRIZIO
Handle:
https://iris.cnr.it/handle/20.500.14243/144735
Published in:
JOURNAL OF NANOMATERIALS (PRINT)
Journal
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