Low-dimensional, hinged bar-code metal oxide layers and free-standing, ordered organic nanostructures from turbostratic vanadium oxide

O'Dwyer C.; Lavayen V.; Fuenzalida, D; Lozano H.; Santa Ana, MA; Benavente E.; Gonzalez G. ; Torres, CMS

Abstract

Both low-dimensional bar-coded metal oxide layers, which exhibit molecular hinging, and free-standing organic nanostructures can be obtained from unique nanofibers of vanadium oxide (VOx). The nanofibers are successfully synthesized by a simple chemical route using an ethanolic solution of vanadium pentoxide xerogel and dodecanethiol resulting in a double bilayered laminar turbostratic structure. The formation of vanadium oxide nanofibers is observed after hydrothermal treatment of the thiol-intercalated xerogel, resulting in typical lengths in the range 2-6 μm and widths of about 50-500 nm. We observe concomitant hinging of the flexible nanofiber lamina at periodic hinge points in the final product on both the nanoscale and molecular level. Bar-coded nanofibers comprise alternating segments of organic-inorganic (thiols-VO x) material and are amenable to segmented, localized metal nanoparticle docking. Under certain conditions free-standing bilayered organic nanostructures are realized. © 2008 Wiley-VCH Verlag GmbH & Co. KGaA.

Más información

Título según WOS: Low-dimensional, hinged bar-code metal oxide layers and free-standing, ordered organic nanostructures from turbostratic vanadium oxide
Título según SCOPUS: Low-dimensional, hinged bar-code metal oxide layers and free-standing, ordered organic nanostructures from turbostratic vanadium oxide
Título de la Revista: SMALL
Volumen: 4
Número: 7
Editorial: WILEY-V C H VERLAG GMBH
Fecha de publicación: 2008
Página de inicio: 990
Página final: 1000
Idioma: English
URL: http://doi.wiley.com/10.1002/smll.200701014
DOI:

10.1002/smll.200701014

Notas: ISI, SCOPUS