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Herringbone nanofiber CVD synthesis and high pressure hydrogen adsorption performance analysis by molecular modelling
Authors:SK Beyaz  F Darkrim Lamari  BP Weinberger  P Gadelle  L Firlej  P Bernier
Affiliation:1. Kocaeli University, Faculty of Arts and Science, Department of Chemistry, Umuttepe Yerleskesi, 41380 Izmit, Turkey;2. LIMHP Université Paris 13 CNRS UPR1311 Institut Galilee, 99 Avenue J.B. Clément, 93430 Villetaneuse, France;3. LTPCM ENSEEG, BP 75, 38402 St, Martin d''Hères Cédex, France;4. Université Montpellier II, LCVN UMR 5587, CC 26 F34095, Montpellier Cédex 5, France
Abstract:In order to interpret adsorption results of hydrogen storage by adsorption in graphite nanofiber (GNF) materials at molecular scale and to propose optimized structures of graphitic materials, we have realized both experimental and numerical studies of gas adsorption in GNF. The porous materials have been synthesized by CVD method. The adsorption experiments were performed at 293 K by a volumetric method at high pressure until 40 MPa. We completed the surface reactivity analysis by performing structural characterizations of the samples using different structural techniques and numerical modelling computed in the grand canonical Gibbs ensemble. Within the cell, stacks of plans of graphite are arranged periodically using boundary conditions. The present numerical approach enables to interpret the results based on the solid–gas molecular interactions reactivity analysis.
Keywords:Hydrogen  Storage  Adsorption  Material characterization  Molecular modelling  Nanofiber  Surface modification
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