Cationic nanomaterials are promising candidates for the development of effective antibacterial agents by taking advantage of the nanoscale effects as well as other exceptional physicochemical properties of nanomaterials. In this study, carboxylated cellulose nanocrystals (cCNCs) derived from softwood pulp were coated with cationic poly(diallyldimethylammonium chloride) of varying molecular weights. The resulting cationic carboxylated cellulose nanocrystals coated with poly(diallyldimethylammonium chloride) (cCNCs–PDDA) nanomaterials were characterized for their structural and morphological properties using Fourier transform infrared spectroscopy, dynamic light scattering, zeta potential, elemental analysis, transmission electron microscopy,...
Nanomaterials have been widely used as antimicrobial agents for their high efficiency. However, the ...
WOS: 000391896800174PubMed ID: 27987868In the present paper, we reported how cellulose nanocrystals ...
In biomedical applications, bacterial cellulose (BC) is widely used because of its cytocompatibility...
Cationic nanomaterials are promising candidates for the development of effective antibacterial agent...
Hypothesis: In order to achieve safe and high-quality food products, the use of suitable packaging m...
We used hairy nanocrystalline cellulose functionalized with aldehyde groups, otherwise known as ster...
Cellulose nanocrystals (CNCs) continue to gain increasing attention in the materials community as su...
Cellulose nanocrystals (CNCs) are renewable nanosized materials with exceptional physicochemical pro...
An environmentally friendly approach was implemented for the production of nanocomposites with bacte...
Various cellulosic materials have replaced petroleum-derived polymers, offering natural and sustaina...
Bacterial cellulose nanocrystals (BCNCs) have hydrophilic surfaces due to hydroxyl groups but are wa...
Bacterial cellulose (BC) is a polymer with interesting physical properties owing to the regular and ...
As a new type of polymer, water-driven polyurethane (PU) has attracted increasing attention of resea...
To obtain composite fiber materials with antibacterial properties, the samples of bacterial cellulos...
This paper reports on a simple and green approach to fabricate cellulose nanocrystal@polyrhodanine (...
Nanomaterials have been widely used as antimicrobial agents for their high efficiency. However, the ...
WOS: 000391896800174PubMed ID: 27987868In the present paper, we reported how cellulose nanocrystals ...
In biomedical applications, bacterial cellulose (BC) is widely used because of its cytocompatibility...
Cationic nanomaterials are promising candidates for the development of effective antibacterial agent...
Hypothesis: In order to achieve safe and high-quality food products, the use of suitable packaging m...
We used hairy nanocrystalline cellulose functionalized with aldehyde groups, otherwise known as ster...
Cellulose nanocrystals (CNCs) continue to gain increasing attention in the materials community as su...
Cellulose nanocrystals (CNCs) are renewable nanosized materials with exceptional physicochemical pro...
An environmentally friendly approach was implemented for the production of nanocomposites with bacte...
Various cellulosic materials have replaced petroleum-derived polymers, offering natural and sustaina...
Bacterial cellulose nanocrystals (BCNCs) have hydrophilic surfaces due to hydroxyl groups but are wa...
Bacterial cellulose (BC) is a polymer with interesting physical properties owing to the regular and ...
As a new type of polymer, water-driven polyurethane (PU) has attracted increasing attention of resea...
To obtain composite fiber materials with antibacterial properties, the samples of bacterial cellulos...
This paper reports on a simple and green approach to fabricate cellulose nanocrystal@polyrhodanine (...
Nanomaterials have been widely used as antimicrobial agents for their high efficiency. However, the ...
WOS: 000391896800174PubMed ID: 27987868In the present paper, we reported how cellulose nanocrystals ...
In biomedical applications, bacterial cellulose (BC) is widely used because of its cytocompatibility...