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dc.creatorAL-HAJJAJ, A.A.-
dc.creatorZAMORA, B.-
dc.creatorBAVYKIN, D.V.-
dc.creatorSHAH, A.A-
dc.creatorWALSH, F.C-
dc.creatorREGUERA, E.-
dc.date2012-03-22T23:14:44Z-
dc.date2012-03-22T23:14:44Z-
dc.date2011-10-19-
dc.date.accessioned2013-01-16T09:50:09Z-
dc.date.available2013-01-16T09:50:09Z-
dc.date.issued2013-01-16-
dc.identifierinternational journal o fhydrogen energy 3 7 ( 2 0 1 2 ) 3 1 8 e 3 2 6-
dc.identifierhttp://hdl.handle.net/123456789/279-
dc.identifier.urihttp://www.repositoriodigital.ipn.mx/handle/123456789/10774-
dc.descriptionNanostructured films of cadmium hexacyanoferrate (III), Cd3[Fe(CN)6]2 have been deposited on the surface of titanate nanotubes (TiNT) by ion exchange with CdSO4, followed by reaction with K3[Fe(CN)6] in an aqueous suspension. The composite demonstrates a significantly higher hydrogen storage uptake than pure Cd3[Fe(CN)6]2 and TiNT. At a temperature of 77 K and a pressure 100 bar, the hydrogen uptake for the composite is approximately 12.5 wt %, whereas only 4.5 wt % and 4 wt % are achieved for the TiNT and Cd3[Fe(CN)6]2 respectively. Electron microscopy and infrared spectroscopy show that Cd3[Fe(CN)6]2 is uniformly distributed on the surface of the nanotubes forming a discontinuous nanostructured film with a well developed interface, which allows efficient interaction with the support. The possible reasons for the high uptake of hydrogen in the composite are discussed. Copyright ª 2011, Hydrogen Energy Publications, LLC. Published by Elsevier Ltd. All rights reserved.-
dc.languageen_US-
dc.publisherSCIVERSE SCIENCEDIRECT-
dc.titleSorption of hydrogen onto titanate nanotubes decorated with-
dc.typeArticle-
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