Sorry, you need to enable JavaScript to visit this website.

Organic functionalization of metal oxide surfaces: An atomic scale modeling approach

TitleOrganic functionalization of metal oxide surfaces: An atomic scale modeling approach
Publication TypeArticolo su Rivista peer-reviewed
Year of Publication2013
AuthorsArcangeli, Caterina, Borriello I., Gianese G., Celino M., and Morales P.
JournalNanoscience and Nanotechnology Letters
Volume5
Pagination1147-1154
ISSN19414900
KeywordsAdhesion, Amino acids, Classical molecular dynamics, Crystalline structure, First-principles molecular dynamics, First-principles simulations, Metal oxide surfaces, molecular dynamics, Organic functionalization, Peptides, Selective adsorption, Structural conformations, Surfaces, Titanium dioxide
Abstract

We analyze from a computational viewpoint the conformational and dynamical properties of the interesting oligopeptide that is reported to bind specifically to titania surfaces. First-principles simulations based on Density Functional Theory (DFT) and classical Molecular Dynamics (MD) are carried out to investigate both the structure and the stability of single amino acids and of the full peptide on the (101) surface of TiO2 in the anatase crystalline structure. Moreover the strength of the adhesion is estimated by pulling the peptide away from the surface. Our results shed light on the role played by some amino acids that are known to be essential in selective adsorption on TiO2, as well as on the peptide structural conformation upon the surface.Copyright © 2013 American Scientific Publishers.

Notes

cited By 2

URLhttps://www.scopus.com/inward/record.uri?eid=2-s2.0-84890468316&doi=10.1166%2fnnl.2013.1692&partnerID=40&md5=d3664d0bcbbbc06cbcc5f1c21b82a136
DOI10.1166/nnl.2013.1692
Citation KeyArcangeli20131147