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Mesoscopic 3D Charge Transport in Solution-Processed Graphene-Based Thin Films: A Multiscale Analysis

Articolo
Data di Pubblicazione:
2023
Abstract:
Graphene and related 2D material (GRM) thin films consist of 3D assembly of billions of 2D nanosheets randomly distributed and interacting via van der Waals forces. Their complexity and the multiscale nature yield a wide variety of electrical characteristics ranging from doped semiconductor to glassy metals depending on the crystalline quality of the nanosheets, their specific structural organization ant the operating temperature. Here, the charge transport (CT) mechanisms are studied that are occurring in GRM thin films near the metal-insulator transition (MIT) highlighting the role of defect density and local arrangement of the nanosheets. Two prototypical nanosheet types are compared, i.e., 2D reduced graphene oxide and few-layer-thick electrochemically exfoliated graphene flakes, forming thin films with comparable composition, morphology and room temperature conductivity, but different defect density and crystallinity. By investigating their structure, morphology, and the dependence of their electrical conductivity on temperature, noise and magnetic-field, a general model is developed describing the multiscale nature of CT in GRM thin films in terms of hopping among mesoscopic bricks, i.e., grains. The results suggest a general approach to describe disordered van der Waals thin films.
Tipologia CRIS:
01.01 Articolo in rivista
Keywords:
charge transport; disordered systems; graphene; phase transition; Van der Waals thin films; weak localization
Elenco autori:
Boschi, Alex; Palermo, Vincenzo; Candini, Andrea; Liscio, Andrea; Mussi, Valentina; Liscio, Fabiola; Kovtun, Alessandro; DE SIMONE, Sara
Autori di Ateneo:
CANDINI ANDREA
DE SIMONE SARA
KOVTUN ALESSANDRO
LISCIO ANDREA
LISCIO FABIOLA
MUSSI VALENTINA
PALERMO VINCENZO
Link alla scheda completa:
https://iris.cnr.it/handle/20.500.14243/461441
Pubblicato in:
SMALL (WEINH., PRINT)
Journal
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