New tannin–lignin aerogels LI Grishechko, G Amaral-Labat, A Szczurek, V Fierro, BN Kuznetsov, ... Industrial Crops and Products 41, 347-355, 2013 | 191 | 2013 |
Environment‐friendly soy flour‐based resins without formaldehyde GA Amaral‐Labat, A Pizzi, AR Goncalves, A Celzard, S Rigolet, ... Journal of Applied Polymer Science 108 (1), 624-632, 2008 | 171 | 2008 |
Lignin–phenol–formaldehyde aerogels and cryogels LI Grishechko, G Amaral-Labat, A Szczurek, V Fierro, BN Kuznetsov, ... Microporous and Mesoporous Materials 168, 19-29, 2013 | 158 | 2013 |
The use of tannin to prepare carbon gels. Part I: Carbon aerogels A Szczurek, G Amaral-Labat, V Fierro, A Pizzi, E Masson, A Celzard Carbon 49 (8), 2773-2784, 2011 | 146 | 2011 |
The use of tannin to prepare carbon gels. Part II. Carbon cryogels A Szczurek, G Amaral-Labat, V Fierro, A Pizzi, A Celzard Carbon 49 (8), 2785-2794, 2011 | 121 | 2011 |
Flammability assessment of tannin-based cellular materials A Celzard, V Fierro, G Amaral-Labat, A Pizzi, J Torero Polymer Degradation and Stability 96 (4), 477-482, 2011 | 102 | 2011 |
Tannin-based xerogels with distinctive porous structures G Amaral-Labat, LI Grishechko, V Fierro, BN Kuznetsov, A Pizzi, ... Biomass and bioenergy 56, 437-445, 2013 | 85 | 2013 |
Pore structure and electrochemical performances of tannin-based carbon cryogels G Amaral-Labat, A Szczurek, V Fierro, N Stein, C Boulanger, A Pizzi, ... biomass and bioenergy 39, 274-282, 2012 | 75 | 2012 |
Electromagnetic shielding efficiency in -band: carbon foam versus epoxy/carbon nanotube composites PP Kuzhir, AG Paddubskaya, MV Shuba, SA Maksimenko, A Celzard, ... Journal of Nanophotonics 6 (1), 061715-061715, 2012 | 75 | 2012 |
Highly mesoporous organic aerogels derived from soy and tannin G Amaral-Labat, L Grishechko, A Szczurek, V Fierro, A Pizzi, B Kuznetsov, ... Green Chemistry 14 (11), 3099-3106, 2012 | 74 | 2012 |
Systematic studies of tannin–formaldehyde aerogels: preparation and properties G Amaral-Labat, A Szczurek, V Fierro, A Pizzi, A Celzard Science and Technology of Advanced Materials 14 (1), 015001, 2013 | 69 | 2013 |
Structure and electrochemical capacitance of carbon cryogels derived from phenol–formaldehyde resins A Szczurek, K Jurewicz, G Amaral-Labat, V Fierro, A Pizzi, A Celzard Carbon 48 (13), 3874-3883, 2010 | 60 | 2010 |
Acoustic properties of cellular vitreous carbon foams G Amaral-Labat, E Gourdon, V Fierro, A Pizzi, A Celzard Carbon 58, 76-86, 2013 | 59 | 2013 |
Tannin gels and their carbon derivatives: a review FL Braghiroli, G Amaral-Labat, AFN Boss, C Lacoste, A Pizzi Biomolecules 9 (10), 587, 2019 | 46 | 2019 |
Impact of depressurizing rate on the porosity of aerogels G Amaral-Labat, A Szczurek, V Fierro, E Masson, A Pizzi, A Celzard Microporous and Mesoporous Materials 152, 240-245, 2012 | 44 | 2012 |
Adsorption by carbon gels A Celzard, V Fierro, G Amaral-Labat Novel carbon adsorbents, 207-244, 2012 | 38 | 2012 |
Porosity of resorcinol-formaldehyde organic and carbon aerogels exchanged and dried with supercritical organic solvents A Szczurek, G Amaral-Labat, V Fierro, A Pizzi, E Masson, A Celzard Materials Chemistry and Physics 129 (3), 1221-1232, 2011 | 37 | 2011 |
Biosourced, highly porous, carbon xerogel microspheres LI Grishechko, G Amaral-Labat, V Fierro, A Szczurek, BN Kuznetsov, ... RSC advances 6 (70), 65698-65708, 2016 | 31 | 2016 |
“Blue glue”: a new precursor of carbon aerogels G Amaral-Labat, A Szczurek, V Fierro, A Pizzi, E Masson, A Celzard Microporous and mesoporous materials 158, 272-280, 2012 | 29 | 2012 |
Chemical activation of tannin-based hydrogels by soaking in KOH and NaOH solutions A Szczurek, G Amaral-Labat, V Fierro, A Pizzi, A Celzard Microporous and mesoporous materials 196, 8-17, 2014 | 27 | 2014 |