The present study describes production of bacterial cellulose composites with silver nanoparticles and antibiotics and compares their properties. Bacterial cellulose (BC) composites synthesized in the culture of the strain of acetic acid bacterium Komagataeibacter xylinus VKPM B-12068 with silver nanoparticles, BC/AgNps, were produced hydrothermally, under different AgNO3 concentrations (0.0001, 0.001, and 0.01 M) in the reaction medium. The presence of silver in the BC/AgNp composites was confirmed by elemental analysis conducted using scanning electron microscopy with a system of X-ray spectral analysis. Analysis showed that the average atomic number of silver particles in composite samples depended on the concentration of AgNO3: as AgNO3...
The use of nanoscale materials allowed researchers to study a variety of disease treatments using mi...
Antimicrobial membrane disc of BC with sodium alginate and chitosan were fabricated through doping n...
The rapid expansion of drug-resistant pathogens has created huge global impact and development of no...
The objective of this research were to study the characteristic of silver nanoparticles, the charac...
Bacterial cellulose (BC) functionalized with silver nanoparticles (AgNPs) is evaluated as an antimic...
A simple method was developed to load a large amount of silver nanoparticles into bacterial cellulos...
Bacterial cellulose (C) and its composites were synthesized from rice waste water with addition of g...
Antimicrobial bacterial cellulose-silver nanoparticles composite membranes have been obtained by &qu...
Bacterial cellulose (BC) was functionalized applying the Laccase/TEMPO oxidative treatment, leading ...
Cellulose/Ag nanocomposites were prepared using two distinct methodologies and two cellulose substra...
A novel, simple method was developed to synthesize biocompatible composites containing 50% cellulose...
New bacterial cellulose/chitosan (BC/Ch) nanocomposite films were obtained using a simple procedure ...
A novel, simple method was developed to synthesize biocompatible composites containing 50% cellulose...
Abstract The use of cellulosic polymers as efficient reducing, coating agents, and stabilizers in th...
In recent years, there has been a lot of attention in producing and using of renewable and environme...
The use of nanoscale materials allowed researchers to study a variety of disease treatments using mi...
Antimicrobial membrane disc of BC with sodium alginate and chitosan were fabricated through doping n...
The rapid expansion of drug-resistant pathogens has created huge global impact and development of no...
The objective of this research were to study the characteristic of silver nanoparticles, the charac...
Bacterial cellulose (BC) functionalized with silver nanoparticles (AgNPs) is evaluated as an antimic...
A simple method was developed to load a large amount of silver nanoparticles into bacterial cellulos...
Bacterial cellulose (C) and its composites were synthesized from rice waste water with addition of g...
Antimicrobial bacterial cellulose-silver nanoparticles composite membranes have been obtained by &qu...
Bacterial cellulose (BC) was functionalized applying the Laccase/TEMPO oxidative treatment, leading ...
Cellulose/Ag nanocomposites were prepared using two distinct methodologies and two cellulose substra...
A novel, simple method was developed to synthesize biocompatible composites containing 50% cellulose...
New bacterial cellulose/chitosan (BC/Ch) nanocomposite films were obtained using a simple procedure ...
A novel, simple method was developed to synthesize biocompatible composites containing 50% cellulose...
Abstract The use of cellulosic polymers as efficient reducing, coating agents, and stabilizers in th...
In recent years, there has been a lot of attention in producing and using of renewable and environme...
The use of nanoscale materials allowed researchers to study a variety of disease treatments using mi...
Antimicrobial membrane disc of BC with sodium alginate and chitosan were fabricated through doping n...
The rapid expansion of drug-resistant pathogens has created huge global impact and development of no...