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Hierarchically Structured Carbonaceous Foams Generation and Their Use as Electrochemical Capacitors and Negative Electrodes for Lithium-ion Batteries Devices

Published online by Cambridge University Press:  01 February 2011

Nicolas Brun
Affiliation:
brun@crpp-bordeaux.cnrs.fr, Centre de Recherche Paul Pascal, Pessac, France
Savari R. S. Prabaharan
Affiliation:
Prabaharan.Sahaya@nottingham.edu.my, Faculty of Engineering and Computer Science, Semenyih, Malaysia
Mathieu Morcrette
Affiliation:
mathieu.morcrette@u-picardie.fr, Laboratoire de Réactivité et Chimie des Solides, Amiens, France
Marc Birot
Affiliation:
m.birot@ism.u-bordeaux1.fr, Institut des Sciences Moléculaires, Talence, France
Gilles Pécastaings
Affiliation:
pecastaings@enscpb.fr, Laboratoire de Chimie des Polymères Organiques, Pessac, France
Raphaël Janot
Affiliation:
raphael.janot@sc.u-picardie.fr, Laboratoire de Réactivité et Chimie des Solides, Amiens, France
Rénal Backov
Affiliation:
backov@crpp-bordeaux.cnrs.fr, Centre de Recherche Paul Pascal, Pessac, France
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Abstract

Using a hard exotemplate procedure, hierarchically structured carbonaceous foams have been designed, using silica monolith as inorganic template and phenolic resin as carbon precursor. The open cell carbonaceous monoliths exhibit specific surface areas from 500 to 800 m2.g-1, essentially based on microporosity and macropores ranging from 0.05 up to 50 μm. Application as electrochemical energy storage devices have been checked and discuss inhere.

Type
Research Article
Copyright
Copyright © Materials Research Society 2010

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References

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