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Carbohydrate Polymers, 2015
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.
Demilecamps, Arnaud +4 more
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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.
Demilecamps, Arnaud +4 more
openaire +3 more sources
2014
Aerogels were discovered in 1932 and since then their properties, in particular their high surface area, small pore size, transparency, low thermal conductivity and high pore volume have attracted attention for diverse applications. These applications include thermal insulation, catalyst supports, anti-reflectance coatings, composite materials such as ...
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Aerogels were discovered in 1932 and since then their properties, in particular their high surface area, small pore size, transparency, low thermal conductivity and high pore volume have attracted attention for diverse applications. These applications include thermal insulation, catalyst supports, anti-reflectance coatings, composite materials such as ...
openaire +1 more source
Biopolymers based aerogels: A review on revolutionary solutions for smart therapeutics delivery
Progress in Materials Science, 2023H P S Abdul Khalil +2 more
exaly
American Aerogel Corporation: Organic Aerogel Commercialization
2011American Aerogel produces an organic monolithic aerogel panel called Aerocore. Its properties have been optimized for the mass production of vacuum insulation panels (VIPs). This contribution summarizes the history of the company and describes the Company’s materials.
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Structural Characterization of Aerogels
2011Determining reliable structural parameters for an aerogel by applying suitable characterization techniques is a key factor in terms of understanding the different synthesis steps and their impact on the resulting aerogel. Combining structural parameters with the physical properties of the material allows optimization for specific applications.
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Tailoring Graphene Oxide‐Based Aerogels for Efficient Solar Steam Generation under One Sun
Advanced Materials, 2017Weichao Xu, Lin Zhou, Yingling Tan
exaly

