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- W2531033090 abstract "Recently, a new member of the nanocellulose family was introduced, a cellulose II gel consisting of nanostructured and spherical particles. In this study, we compared two different drying techniques to obtain highly porous powders from this gel with preserved meso- and macroporous nanostructure: first, freeze-drying after solvent exchange to tBuOH and second, supercritical drying of the respective EtOH alcogel. The approaches yielded aerogel powders with surface areas of 298 and 423 m2/g, respectively. Both powders are amphiphilic and possess energetically heterogeneous surfaces with dominating dispersive term of the surface energy in the range of 50–52 mJ/m2, as determined by a combination of physicochemical surface characterization techniques, such as iGC, BET and SEM. Despite the lower surface area, the cheaper and more widespread method, freeze-drying, yields a more polar and reactive cryogel." @default.
- W2531033090 created "2016-10-21" @default.
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- W2531033090 date "2016-10-15" @default.
- W2531033090 modified "2023-10-18" @default.
- W2531033090 title "Surface properties and porosity of highly porous, nanostructured cellulose II particles" @default.
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- W2531033090 doi "https://doi.org/10.1007/s10570-016-1091-y" @default.
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