In the present study, an extensive investigation of the molecule-surface interaction in hybrid systems formed by phthalocyanines (Pcs) and inorganic semiconductors (IS) has been performed by using ab initio theoretical methods. The aim of this study is to provide a framework to design effectively coupled Pcs/IS systems, assumed here to be characterized by the formation of chemical bonds between the two components and by a molecule-surface charge-transfer involving the pi-electron clouds responsible of the Pc optical and transport properties. The achieved results strengthen a crucial point for designing coupled Pc/IS structures, that is, the occurrence of a universal alignment of the Pc electronic levels with respect to the semiconductor band structure, previously Suggested only on the ground of a limited set of results. Present results also confirm that an effective organic-inorganic coupling can be achieved through a careful choice of the PC-substrate system and the semiconductor doping. In this regard, they trace also novel routes for designing hybrid Pc/IS systems by showing that the degrees of freedom for reaching an effective coupling can be increased by modifying the molecular architecture. Finally, present results predict that X-ray photoelectron spectroscopy (XPS) measurements can give an experimental evidence of molecule-surface charge-transfer processes occurring in coupled Pc/IS systems.

Ab initio Theoretical Investigation of Phthalocyanine-Semiconductor Hybrid Systems / Mattioli, G; Filippone, F; Giannozzi, P; Caminiti, Ruggero; Bonapasta, Aa. - In: CHEMISTRY OF MATERIALS. - ISSN 0897-4756. - STAMPA. - 21:(2009), pp. 4555-4567. [10.1021/cm9014755]

Ab initio Theoretical Investigation of Phthalocyanine-Semiconductor Hybrid Systems

CAMINITI, Ruggero;
2009

Abstract

In the present study, an extensive investigation of the molecule-surface interaction in hybrid systems formed by phthalocyanines (Pcs) and inorganic semiconductors (IS) has been performed by using ab initio theoretical methods. The aim of this study is to provide a framework to design effectively coupled Pcs/IS systems, assumed here to be characterized by the formation of chemical bonds between the two components and by a molecule-surface charge-transfer involving the pi-electron clouds responsible of the Pc optical and transport properties. The achieved results strengthen a crucial point for designing coupled Pc/IS structures, that is, the occurrence of a universal alignment of the Pc electronic levels with respect to the semiconductor band structure, previously Suggested only on the ground of a limited set of results. Present results also confirm that an effective organic-inorganic coupling can be achieved through a careful choice of the PC-substrate system and the semiconductor doping. In this regard, they trace also novel routes for designing hybrid Pc/IS systems by showing that the degrees of freedom for reaching an effective coupling can be increased by modifying the molecular architecture. Finally, present results predict that X-ray photoelectron spectroscopy (XPS) measurements can give an experimental evidence of molecule-surface charge-transfer processes occurring in coupled Pc/IS systems.
2009
FIELD EFFECT TRANSISTORS; RADIATION PHOTOELECTRON SPECTROSCOPY; METAL PHTHALOCYANINES; LEAD PHTHALOCYANINE; THIN FILMS; COPPER PHTHALOCYANINE; ELECTRONIC STRUCTURE; SURFACE; RECONSTRUCTIONS; SPINTRONICS
01 Pubblicazione su rivista::01a Articolo in rivista
Ab initio Theoretical Investigation of Phthalocyanine-Semiconductor Hybrid Systems / Mattioli, G; Filippone, F; Giannozzi, P; Caminiti, Ruggero; Bonapasta, Aa. - In: CHEMISTRY OF MATERIALS. - ISSN 0897-4756. - STAMPA. - 21:(2009), pp. 4555-4567. [10.1021/cm9014755]
File allegati a questo prodotto
Non ci sono file associati a questo prodotto.

I documenti in IRIS sono protetti da copyright e tutti i diritti sono riservati, salvo diversa indicazione.

Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11573/30304
 Attenzione

Attenzione! I dati visualizzati non sono stati sottoposti a validazione da parte dell'ateneo

Citazioni
  • ???jsp.display-item.citation.pmc??? ND
  • Scopus 26
  • ???jsp.display-item.citation.isi??? 26
social impact