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Self-assembled guanine ribbons as wide-bandgap semiconductors

Academic Article
Publication Date:
2002
abstract:
We present a first principle study about the stability and the electronic properties of a new biomolecular solid-state material, obtained by the self-assembling of guanine (G) molecules. We consider hydrogen-bonded planar ribbons in isolated and stacked configurations. These aggregates present electronic properties similar to inorganic wide-band gap semiconductors. The formation of Bloch-type orbitals is observed along the stacking direction, white it is negligible in the ribbon plane. Global band-like conduction may be affected by a dipole-Field which spontaneously arises along the ribbon axis. Our results indicate that G-ribbon assemblies are promising materials for biomolecular nanodevices, consistently with recent experimental results
Iris type:
01.01 Articolo in rivista
Keywords:
nanostructures; density functional theory; molecular electronics; ribbons
List of contributors:
Garbesi, ANNA MARIA; Calzolari, Arrigo; DI FELICE, Rosa
Authors of the University:
CALZOLARI ARRIGO
DI FELICE ROSA
Handle:
https://iris.cnr.it/handle/20.500.14243/4407
Published in:
PHYSICA E-LOW-DIMENSIONAL SYSTEMS & NANOSTRUCTURES
Journal
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