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Cellulose acetate (CA) membranes and films were fabricated, respectively, by electrospinning and solvent casting. A systematic analysis of structure and properties was made to compare the differences ...
The melt spinning of cellulose acetate butyrate (CAB) without any additives is realized according to the thermal and rheological properties of cellulose acetate butyrate raw material ...
by esterification, when polar hydroxyl groups of cellulose were replaced by non-polar substituents. The esterification process was accompanied by the disruption of the crystalline structure of cellulose and its ...
Composites containing up to 5 wt % montmorillonite (MMT) nanoparticles are created based on natural materials , cellulose acetate and MMT, and film membranes are prepared. The characteristic features ...
As naturally derived material , cellulose aerogels have excellent thermal insulation properties due to their unique high porosity and three-dimensional mesoporous structure . However, its hydrophilic ...
Cellulose acetate butyrate (CAB) is a possible candidate, being a raw material derived from renewable resources, to replace fossil-based materials . This is due to its thermoplastic properties ...
difference and its relation to fine structure can be postulated. Cellulose films different were the having radically physical properties prepared by of standard viscose and the commercial cellulose acetate ...
, this derivative is used in combination with other compounds (polymers, nanoparticles) in order to obtain active materials . Here, we report the preparation of thin films made of cellulose acetate loaded ...
by annealing. This triacetate is partially hydrolyzed to form the secondary cellulose acetate used in textile yarns, which gives an x-ray pattern showing a highly amorphous structure . Although steric effects ...
of the cellulosic material structure on the double bond conversion degree. Additionally, to manipulate the properties of the photocured systems, the methacrylate-functionalized cellulose acetate derivatives were ...
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