The performances of organic (opto)electronic devices strongly depend on the order at the supramolecular level. Unraveling the relationship between structural and electronic properties in nanoscale architectures is therefore key for both fundamental studies and technological applications. C-AFM and KPFM provide an immediate correlation between the morphology of a material and its electrical/electronic properties such as local conductivity and surface potential. Thus, they are unrivaled techniques offering crucial information toward the optimization of the real devices, ultimately providing an important contribution to a hot field at the cross-road between nanoscience and organic (opto)electronics. Herein we focus on the application of C-AFM and KPFM on self-assembled monolayers (SAMs), organic (semi)conducting materials for thin film transistors (TFTs) and organic blends for photovoltaics (OSCs).

Electronic characterization of supramolecular materials at the nanoscale by Conductive Atomic Force and Kelvin Probe Force microscopies

Liscio Andrea;Palermo Vincenzo;
2014

Abstract

The performances of organic (opto)electronic devices strongly depend on the order at the supramolecular level. Unraveling the relationship between structural and electronic properties in nanoscale architectures is therefore key for both fundamental studies and technological applications. C-AFM and KPFM provide an immediate correlation between the morphology of a material and its electrical/electronic properties such as local conductivity and surface potential. Thus, they are unrivaled techniques offering crucial information toward the optimization of the real devices, ultimately providing an important contribution to a hot field at the cross-road between nanoscience and organic (opto)electronics. Herein we focus on the application of C-AFM and KPFM on self-assembled monolayers (SAMs), organic (semi)conducting materials for thin film transistors (TFTs) and organic blends for photovoltaics (OSCs).
2014
Istituto per la Sintesi Organica e la Fotoreattivita' - ISOF
Inglese
17
10
504
517
14
https://www.sciencedirect.com/science/article/pii/S1369702114002107
Sì, ma tipo non specificato
supramolecular a materials
AFM
2
info:eu-repo/semantics/article
262
Musumeci, Chiara; Liscio, Andrea; Palermo, Vincenzo; Samorì, Paolo
01 Contributo su Rivista::01.01 Articolo in rivista
none
   GraphenE-orgaNIc hybrid architectures for organic electronics: a mUltiSite training action
   GENIUS
   FP7
   264694

   Graphene-Based Revolutions in ICT And Beyond
   GRAPHENE
   FP7
   604391
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/422537
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