New mineralized, agar-based nanocomposite films (Zn-carbonate and Zn-phosphate/agar) were produced by a combination of in situ precipitation and a casting method. The presence of minerals significantly influenced the morphology, properties and functionality of the obtained nanocomposites. Reinforcement with the Zn-mineral phase improved the mechanical properties of the carbonate-mineralized films, but had a negligible effect on the phosphate-mineralized samples. Both nanocomposites showed improved optical and thermal properties, better Zn(II) release potential in a slightly acidic environment and exhibited antimicrobial activity against S. aureus. These results suggest that Zn-mineralized agar nanocomposite films could be potentially used a...
Waste from non-degradable plastics is becoming an increasingly serious problem. Therefore, more and ...
: Nowadays tend to use biodegradable packaging; including edible coatings and films for free from sy...
This study aimed to investigate the release of silver ions from the packaging, their diffusion withi...
New mineralized, agar-based nanocomposite films (Zn-carbonate and Zn-phosphate/agar) were produced b...
Agar-based composites with different Zn-carbonate mineral phase content were prepared by in situ min...
New agar-based composite films with increasing Cu-carbonate and Cu-phosphate mineral phase content w...
The use of bio-based packaging materials containing metallic and bimetallic nanoparticles is relativ...
The in situ synthesis of silver nanoparticles (AgNPs) was performed using resorcinol and agar to pro...
Abstract Novel pectin-based films reinforced with crystalline nanocellulose (CNC) and activated with...
Silver (Ag), copper (Cu) and zinc oxide (ZnO) nanoparticles (NPs) were synthesized and antimicrobial...
Montmorillonite modied with a quaternary ammonium salt C30B/starch nanocomposite (C30B/ST-NC), silve...
Hypothesis: In order to achieve safe and high-quality food products, the use of suitable packaging m...
<p></p><p>Antimicrobial packaging is a promising type of active packaging, which has an antimicrobia...
Antimicrobial active films based on poly (lactic acid) (PLA) were prepared with nano-silver (nano-Ag...
Nano-biocomposite films based on plasticized cellulose acetate/triethyl citrate (CA/TEC) were prepar...
Waste from non-degradable plastics is becoming an increasingly serious problem. Therefore, more and ...
: Nowadays tend to use biodegradable packaging; including edible coatings and films for free from sy...
This study aimed to investigate the release of silver ions from the packaging, their diffusion withi...
New mineralized, agar-based nanocomposite films (Zn-carbonate and Zn-phosphate/agar) were produced b...
Agar-based composites with different Zn-carbonate mineral phase content were prepared by in situ min...
New agar-based composite films with increasing Cu-carbonate and Cu-phosphate mineral phase content w...
The use of bio-based packaging materials containing metallic and bimetallic nanoparticles is relativ...
The in situ synthesis of silver nanoparticles (AgNPs) was performed using resorcinol and agar to pro...
Abstract Novel pectin-based films reinforced with crystalline nanocellulose (CNC) and activated with...
Silver (Ag), copper (Cu) and zinc oxide (ZnO) nanoparticles (NPs) were synthesized and antimicrobial...
Montmorillonite modied with a quaternary ammonium salt C30B/starch nanocomposite (C30B/ST-NC), silve...
Hypothesis: In order to achieve safe and high-quality food products, the use of suitable packaging m...
<p></p><p>Antimicrobial packaging is a promising type of active packaging, which has an antimicrobia...
Antimicrobial active films based on poly (lactic acid) (PLA) were prepared with nano-silver (nano-Ag...
Nano-biocomposite films based on plasticized cellulose acetate/triethyl citrate (CA/TEC) were prepar...
Waste from non-degradable plastics is becoming an increasingly serious problem. Therefore, more and ...
: Nowadays tend to use biodegradable packaging; including edible coatings and films for free from sy...
This study aimed to investigate the release of silver ions from the packaging, their diffusion withi...