Cellulose/Ag nanocomposites were prepared using two distinct methodologies and two cellulose substrates: vegetable and bacterial cellulose. These nanocomposites were characterized in terms of their morphology and chemical composition. Detailed studies on the antibacterial activity of these materials were carried out for Bacillus subtilis, Staphylococcus aureus and Klebsiella pneumoniae. Silver nanoparticles present in the cellulosic fibers in concentrations as low as 5.0 10 4 wt.% make these nanocomposites effective antibacterial materials. We anticipate that the versatile use of these cellulose-based nanocomposites can bring a promising strategy to produce a wide range of interesting materials where antibacterial properties are cruc...
Antimicrobial bacterial cellulose-silver nanoparticles composite membranes have been obtained by &qu...
The use of nanomaterials, including metallic as active fillers in polymeric nanocomposites for food ...
Materials possessing long-term antibacterial behavior and high cytotoxicity are of extreme interest ...
The design of cheap and safe antibacterial materials for widespread use has been a challenge in mate...
A simple method was developed to load a large amount of silver nanoparticles into bacterial cellulos...
The present study describes production of bacterial cellulose composites with silver nanoparticles a...
Copyright © 2013 Ricardo J. B. Pinto et al. This is an open access article distributed under the Cre...
Many polymer-stabilized silver nanoparticles (AgNPs) with enhanced antibacterial properties have bee...
This paper presents a method for the preparation of nanocomposite cellulose fibers doped with silver...
To obtain composite fiber materials with antibacterial properties, the samples of bacterial cellulos...
Bacterial cellulose (C) and its composites were synthesized from rice waste water with addition of g...
The objective of this research were to study the characteristic of silver nanoparticles, the charac...
Cellulose is a natural polymer that is widely used in daily life, but it is susceptible to microorga...
Abstract The use of cellulosic polymers as efficient reducing, coating agents, and stabilizers in th...
Bacterial cellulose (BC) functionalized with silver nanoparticles (AgNPs) is evaluated as an antimic...
Antimicrobial bacterial cellulose-silver nanoparticles composite membranes have been obtained by &qu...
The use of nanomaterials, including metallic as active fillers in polymeric nanocomposites for food ...
Materials possessing long-term antibacterial behavior and high cytotoxicity are of extreme interest ...
The design of cheap and safe antibacterial materials for widespread use has been a challenge in mate...
A simple method was developed to load a large amount of silver nanoparticles into bacterial cellulos...
The present study describes production of bacterial cellulose composites with silver nanoparticles a...
Copyright © 2013 Ricardo J. B. Pinto et al. This is an open access article distributed under the Cre...
Many polymer-stabilized silver nanoparticles (AgNPs) with enhanced antibacterial properties have bee...
This paper presents a method for the preparation of nanocomposite cellulose fibers doped with silver...
To obtain composite fiber materials with antibacterial properties, the samples of bacterial cellulos...
Bacterial cellulose (C) and its composites were synthesized from rice waste water with addition of g...
The objective of this research were to study the characteristic of silver nanoparticles, the charac...
Cellulose is a natural polymer that is widely used in daily life, but it is susceptible to microorga...
Abstract The use of cellulosic polymers as efficient reducing, coating agents, and stabilizers in th...
Bacterial cellulose (BC) functionalized with silver nanoparticles (AgNPs) is evaluated as an antimic...
Antimicrobial bacterial cellulose-silver nanoparticles composite membranes have been obtained by &qu...
The use of nanomaterials, including metallic as active fillers in polymeric nanocomposites for food ...
Materials possessing long-term antibacterial behavior and high cytotoxicity are of extreme interest ...