Tailoring the surface properties of nanocellulose to improve the compatibility of components in polymer nanocomposites is of great interest. In this work, dispersions of nanocellulose in water and acetonitrile were functionalized by submerged plasmas, with the aim of increasing the quality of this reinforcing agent in biopolymer composite materials. Both the morphology and surface chemistry of nanocellulose were influenced by the application of a plasma torch and filamentary jet plasma in a liquid suspension of nanocellulose. Depending on the type of plasma source and gas mixture the surface chemistry was modified by the incorporation of oxygen and nitrogen containing functional groups. The treatment conditions which lead to nanocellulose b...
For a modification of natural and synthetic fibrous polymers low-pressure ICRF plasma and liquid rep...
A new strategy for the surface modification of bacterial cellulose (BC) through the combination of o...
Besides their use as packaging materials, biodegradable polymers can play a major role in tissue eng...
Abstract Cellulose, as the most abundant polymer in the world, and recently nanocellulose, have eme...
International audienceAbstract Polymer materials are widely employed in many fields due to the ease ...
In a trend for sustainable engineering and functionalization of surfaces, we explore the possibiliti...
Submerged in liquid plasma treatment is a new approach for nanomaterials functionalization. This pap...
Recently, natural as well as synthetic polymers have been receiving significant attention as candida...
Polymer materials are widely employed in many fields due to the ease with which they can be formed i...
Petroleum-based synthetic plastics play an important role in our life. As the detrimental health and...
The growing concern for environmental problems has motivated the use of materials obtained from bio-...
Due to its nanostructure, bacterial nanocellulose (BC) has several advantages over plant cellulose, ...
With increasing environmental and ecological concerns due to the use of petroleum-based chemicals an...
Nanocellulose has received considerable interest during the last decade because it is renewable and ...
Cellulose is an abundant biopolymer found in many different organisms ranging from microbes to plant...
For a modification of natural and synthetic fibrous polymers low-pressure ICRF plasma and liquid rep...
A new strategy for the surface modification of bacterial cellulose (BC) through the combination of o...
Besides their use as packaging materials, biodegradable polymers can play a major role in tissue eng...
Abstract Cellulose, as the most abundant polymer in the world, and recently nanocellulose, have eme...
International audienceAbstract Polymer materials are widely employed in many fields due to the ease ...
In a trend for sustainable engineering and functionalization of surfaces, we explore the possibiliti...
Submerged in liquid plasma treatment is a new approach for nanomaterials functionalization. This pap...
Recently, natural as well as synthetic polymers have been receiving significant attention as candida...
Polymer materials are widely employed in many fields due to the ease with which they can be formed i...
Petroleum-based synthetic plastics play an important role in our life. As the detrimental health and...
The growing concern for environmental problems has motivated the use of materials obtained from bio-...
Due to its nanostructure, bacterial nanocellulose (BC) has several advantages over plant cellulose, ...
With increasing environmental and ecological concerns due to the use of petroleum-based chemicals an...
Nanocellulose has received considerable interest during the last decade because it is renewable and ...
Cellulose is an abundant biopolymer found in many different organisms ranging from microbes to plant...
For a modification of natural and synthetic fibrous polymers low-pressure ICRF plasma and liquid rep...
A new strategy for the surface modification of bacterial cellulose (BC) through the combination of o...
Besides their use as packaging materials, biodegradable polymers can play a major role in tissue eng...