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Featured researches published by Arnaud Demilecamps.


Carbohydrate Polymers | 2015

Cellulose–silica aerogels

Arnaud Demilecamps; Christian Beauger; Claudia Hildenbrand; Arnaud Rigacci; Tatiana Budtova

Aerogels based on interpenetrated cellulose-silica networks were prepared and characterised. Wet coagulated cellulose was impregnated with silica phase, polyethoxydisiloxane, using two methods: (i) molecular diffusion and (ii) forced flow induced by pressure difference. The latter allowed an enormous decrease in the impregnation times, by almost three orders of magnitude, for a sample with the same geometry. In both cases, nanostructured silica gel was in situ formed inside cellulose matrix. Nitrogen adsorption analysis revealed an almost threefold increase in pores specific surface area, from cellulose aerogel alone to organic-inorganic composite. Morphology, thermal conductivity and mechanical properties under uniaxial compression were investigated. Thermal conductivity of composite aerogels was lower than that of cellulose aerogel due to the formation of superinsulating mesoporous silica inside cellulose pores. Furthermore, composite aerogels were stiffer than each of reference aerogels.


Angewandte Chemie | 2015

Strong, thermally superinsulating biopolymer–silica aerogel hybrids by cogelation of silicic acid with pectin

Shanyu Zhao; Wim J. Malfait; Arnaud Demilecamps; Yucheng Zhang; Samuel Brunner; Lukas Huber; Philippe Tingaut; Arnaud Rigacci; Tatiana Budtova; Matthias M. Koebel


Cellulose | 2014

Cellulose-silica composite aerogels from "one-pot" synthesis

Arnaud Demilecamps; Gudrun Reichenauer; Arnaud Rigacci; Tatiana Budtova


Journal of Non-crystalline Solids | 2016

Nanostructured interpenetrated organic-inorganic aerogels with thermal superinsulating properties

Arnaud Demilecamps; Margot Alvès; Arnaud Rigacci; Gudrun Reichenauer; Tatiana Budtova


ICAE 2015 | 2015

Bio-aerogels: new promising materials for thermal superinsulation

Cyrielle Rudaz; Arnaud Demilecamps; Georg Pour; Margot Alvès; Arnaud Rigacci; Christian Beauger; Claudia Hildenbrand; Gudrun Reichenauer; Tatiana Budtova


ICAE 2015 | 2015

Interpenetrating pectin-silica aerogel nanocomposite materials with improved thermo-mechanical properties

Shanyu Zhao; Arnaud Demilecamps; Arnaud Rigacci; Lukas Huber; Tatiana Budtova; Matthias M. Koebel


EMN (Energy, Materials, Nanotechnology) Meeting on Polymer | 2015

Bio-based aerogels: a new generation of thermal super-insulating materials

Cyrielle Rudaz; Arnaud Demilecamps; Georg Pour; Margot Alvès; Arnaud Rigacci; Hébert Sallée; Gudrun Reichenauer; Tatiana Budtova


Angewandte Chemie | 2015

Inside Cover: Strong, Thermally Superinsulating Biopolymer–Silica Aerogel Hybrids by Cogelation of Silicic Acid with Pectin (Angew. Chem. Int. Ed. 48/2015)

Shanyu Zhao; Wim J. Malfait; Arnaud Demilecamps; Yucheng Zhang; Samuel Brunner; Lukas Huber; Philippe Tingaut; Arnaud Rigacci; Tatiana Budtova; Matthias M. Koebel


Angewandte Chemie | 2015

Innentitelbild: Strong, Thermally Superinsulating Biopolymer–Silica Aerogel Hybrids by Cogelation of Silicic Acid with Pectin (Angew. Chem. 48/2015)

Shanyu Zhao; Wim J. Malfait; Arnaud Demilecamps; Yucheng Zhang; Samuel Brunner; Lukas Huber; Philippe Tingaut; Arnaud Rigacci; Tatiana Budtova; Matthias M. Koebel


Colloque 11 "Matériaux poreux, granulaires et à grande aire spécifique", MATERIAUX 2014 | 2014

Bio-aerogels pour la superisolation thermique

Cyrielle Rudaz; Arnaud Demilecamps; Sylvie Calas-Etienne; Rémi Courson; Laurent Bonnet; Hébert Sallée; Gudrun Reichenauer; Arnaud Rigacci

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Lukas Huber

Swiss Federal Laboratories for Materials Science and Technology

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Matthias M. Koebel

Swiss Federal Laboratories for Materials Science and Technology

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Shanyu Zhao

Swiss Federal Laboratories for Materials Science and Technology

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