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Featured researches published by Corrado Accardi.


Beilstein Journal of Nanotechnology | 2013

Micro- and nanoscale electrical characterization of large-area graphene transferred to functional substrates

Gabriele Fisichella; Salvatore Di Franco; Patrick Fiorenza; Raffaella Lo Nigro; Fabrizio Roccaforte; Cristina Tudisco; Guido G Condorelli; Nicolò Piluso; Noemi Graziana Sparta; Stella Lo Verso; Corrado Accardi; Cristina Tringali; Sebastiano Ravesi; Filippo Giannazzo

Summary Chemical vapour deposition (CVD) on catalytic metals is one of main approaches for high-quality graphene growth over large areas. However, a subsequent transfer step to an insulating substrate is required in order to use the graphene for electronic applications. This step can severely affect both the structural integrity and the electronic properties of the graphene membrane. In this paper, we investigated the morphological and electrical properties of CVD graphene transferred onto SiO2 and on a polymeric substrate (poly(ethylene-2,6-naphthalene dicarboxylate), briefly PEN), suitable for microelectronics and flexible electronics applications, respectively. The electrical properties (sheet resistance, mobility, carrier density) of the transferred graphene as well as the specific contact resistance of metal contacts onto graphene were investigated by using properly designed test patterns. While a sheet resistance R sh ≈ 1.7 kΩ/sq and a specific contact resistance ρc ≈ 15 kΩ·μm have been measured for graphene transferred onto SiO2, about 2.3× higher R sh and about 8× higher ρc values were obtained for graphene on PEN. High-resolution current mapping by torsion resonant conductive atomic force microscopy (TRCAFM) provided an insight into the nanoscale mechanisms responsible for the very high ρc in the case of graphene on PEN, showing a ca. 10× smaller “effective” area for current injection than in the case of graphene on SiO2.


Archive | 2013

Manufacturing method of a graphene-based electrochemical sensor, and electrochemical sensor

Corrado Accardi; Stella Loverso; Sebastiano Ravesi; Noemi Graziana Sparta


Archive | 2013

METHOD FOR TRANSFERRING A GRAPHENE LAYER

Corrado Accardi; Stella Loverso; Sebastiano Ravesi; Noemi Graziana Sparta


Archive | 2015

Method for coupling a graphene layer and a substrate and device comprising the graphene/substrate structure obtained

Sebastiano Ravesi; Corrado Accardi; Cristina Tringali; Noemi Graziana Sparta; Stella Loverso; Filippo Giannazzo


Archive | 2012

Method of manufacturing an electronic device having a plastic substrate and corresponding carrier

Corrado Accardi; Stella Loverso; Sebastiano Ravesi; Noemi Graziana Sparta


Archive | 2012

Encapsulated flexible electronic device, and corresponding manufacturing method

Corrado Accardi; Stella Loverso; Sebastiano Ravesi; Noemi Graziana Sparta


Archive | 2012

THREE-DIMENSIONAL INTEGRATED STRUCTURE HAVING A HIGH SHAPE FACTOR, AND RELATED FORMING METHOD

Corrado Accardi; Stella Loverso; Sebastiano Ravesi; Noemi Graziana Sparta


Archive | 2012

Structure with a high aspect ratio and method of fabrication thereof

Corrado Accardi; Stella Loverso; Sebastiano Ravesi; Noemi Graziana Sparta


Archive | 2012

Method of manufacturing an electronic device having a plastic substrate

Corrado Accardi; Stella Loverso; Sebastiano Ravesi; Noemi Graziana Sparta


Archive | 2012

Verfahren zur Herstellung einer elektronischen Vorrichtung mit einem Kunststoffsubstrat

Corrado Accardi; Stella Loverso; Sebastiano Ravesi; Noemi Graziana Sparta

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