4.8 Article

Carbon/MoO2 composite based on porous semi-graphitized nanorod assemblies from in situ reaction of tri-block polymers

Journal

CHEMISTRY OF MATERIALS
Volume 19, Issue 3, Pages 374-383

Publisher

AMER CHEMICAL SOC
DOI: 10.1021/cm060961y

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Ordered mesoporous carbon materials with a semi-graphitized structure have been synthesized by directly employing a tri-block copolymer as a structure directing agent and carbon source to form mesoporous carbon. Poly(ethylene oxide)(20)-poly(propylene oxide)(70)-poly(ethylene oxide)(20) (EO20PPO70EO20), or P123, was cross-linked in the channels of mesoporous silicate, carbonized, and graphitized. Extraction of the silica produces a mesoporous graphitic carbon replica. The graphitization of carbon was realized by employing transition metals ( Fe, Co, Ni) as a catalyst in a reducing atmosphere. Of the three transition metal catalysts, nickel was found to be the best candidate in terms of preserving structural order. All three nanoporous carbon materials have 3 orders higher conductivity and better thermal stability than non-graphitic carbon. A composite of ordered mesostructured carbon/metallic MoO2 (63.7 wt % MoO2) was prepared and examined as a negative electrode in a lithium rechargeable battery. The material exhibited a reversible capacity of 760 mA center dot h/g in the voltage window 3.0-0.0 V.

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