2023
DOI: 10.1016/j.ijbiomac.2023.124803
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Essential characteristics improvement of metallic nanoparticles loaded carbohydrate polymeric films - A review

Yezihalem Zena,
Selvakumar Periyasamy,
Melaku Tesfaye
et al.
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Cited by 14 publications
(5 citation statements)
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“…The production of PFs requires casting or preparation methods that directly impact the film properties [ 47 ]. These techniques are unique and tailored to specific polymers and application areas [ 48 ]. The desired properties of PFs depend on their intended use, which can range from food packaging to tissue engineering and medical applications [ 49 ].…”
Section: The Solvent Casting Methodsmentioning
confidence: 99%
See 1 more Smart Citation
“…The production of PFs requires casting or preparation methods that directly impact the film properties [ 47 ]. These techniques are unique and tailored to specific polymers and application areas [ 48 ]. The desired properties of PFs depend on their intended use, which can range from food packaging to tissue engineering and medical applications [ 49 ].…”
Section: The Solvent Casting Methodsmentioning
confidence: 99%
“…The most noticeable is the excessive use of solvent for the process, making it harder and relatively expensive to produce these dressings on an industrial scale. Other demerits are the long drying time and the lack of film thickness control [48]. Solvent casting method for film production with quality control parameters.…”
Section: Advantagesmentioning
confidence: 99%
“…26–30 The incorporation of metal NPs as nanofillers in carbohydrate polymers, such as chitin, chitosan, alginate, dextran, and gums, has significantly improved the features of carbohydrate polymers. 31 Consequently, metal NP–carbohydrate polymer composites have been used in many industrial and biological applications. 32 For example, the removal of metal ions and dyes from water.…”
Section: Introductionmentioning
confidence: 99%
“…The structures of all carbon-based nano graphene, MXenes, CNTs, CB, CQDs, fullerene, and MOFs, are shown in Recently, studies on the fabrication of nanocomposites using der carbon in polymers demonstrated their superior mechanical, therma characteristics. The characteristics of nano-carbon reinforcement nanocomposites include (i) a high aspect ratio, as well as strong interf with polymer chains, (ii) homogeneous dispersions of nanofillers in t higher bonding strength between nanofillers and the polymer, (iv) behavior of nanofillers with matrices, (v) greater mechanical interlock and matrices, (vi) strong intermolecular interactions of these nanofille matrices, suppressing the free vibrations and hence reducing heat con basis of these characteristics, the thermal and mechanical properties reinforced polymer nanocomposites can be enhanced, as highlighted Previous reviews have focused on metal-based nanoparticles used as na materials in polymer matrices, and the functional aspects of nanocompos [16][17][18][19]. On the contrary, here, we emphasize the reinforcement effect specifically the thermal and mechanical properties of nano-carbon-rei composites.…”
Section: Introductionmentioning
confidence: 99%
“…On the basis of these characteristics, the thermal and mechanical properties of nano-carbon-reinforced polymer nanocomposites can be enhanced, as highlighted in this review. Previous reviews have focused on metal-based nanoparticles used as nano-reinforcement materials in polymer matrices, and the functional aspects of nanocomposites were studied [16][17][18][19]. On the contrary, here, we emphasize the reinforcement effect of nano-carbons, specifically the thermal and mechanical properties of nano-carbon-reinforced polymer composites.…”
Section: Introductionmentioning
confidence: 99%