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Small ; 4(7): 990-1000, 2008 Jul.
Article in English | MEDLINE | ID: mdl-18535992

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 (VO(x)). 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 microm 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.


Subject(s)
Metal Nanoparticles/chemistry , Nanostructures/chemistry , Oxides/chemistry , Vanadium/chemistry , Chemistry, Inorganic/methods , Chemistry, Organic/methods , Crystallization , Electrochemistry/methods , Gels , Intercalating Agents/pharmacology , Nanotechnology/methods , Organic Chemicals , Spectroscopy, Fourier Transform Infrared , Temperature , X-Ray Diffraction
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