The inclusion of tungsten disulphide nanotubes (WS2 NTs) in chitosan, plasticized with glycerol, facilitates the formation of a polyelectrolyte complex. The glycerol interrupts the intramolecular hydrogen bonding between chitosan chains allowing positively charged protonated amines of chitosan to form a complex with negatively charged oxygen ions chemisorbed to the tungsten atoms in defects. These interactions, with the unique mechanical and chemical properties of WS2 NTs, result in a chitosan film with superior properties relative to unfilled chitosan. Even at low WS2 NT loadings (≤1 wt%), the Young\u27s modulus (E) increases by 59%, tensile strength (σ) by 40% and tensile toughness by 74%, compared to neat chitosan, without sacrificing du...
Global warming, fossil fuel depletion and an increasing world population form the basis of many rese...
A series of plasticised chitosan-based materials and nanocomposites were successfully prepared by th...
Functional advanced biopolymers have received far less attention than renewable biomass (cellulose, ...
The focus of this research was to study the effect of combining nanofillers with different geometry ...
Since long scientists explored natural/bio-polymers to explicit their innate features to develop cer...
Blending with another biopolymer or nanomaterial can be an effective route to modify or tailor the p...
The formation and application of polymeric nanomaterials is great demandin science, industry, biotec...
Improvement in chitosan (CS) was achieved by solution casting using cellulose nanowhiskers (CNWs) an...
Afin de protéger les denrées alimentaires, l’industrie d’emballage enduit sur un film une couche trè...
Cellulose nanocrystals (CNCs) and/or sepiolite (SPT) were thermomechanically mixed with un-plasticis...
Biopolymers such as chitosan and cellulose continue to attract much interest as they have many appea...
The interest in biopolymers has increased due to the depletion of the fossil fuel reserve and the en...
Thermosensitive polymers are materials capable of undergoing a reversible phase transition in aqueou...
Chitosan and gelatin are attractive polymeric feedstocks for developing environmentally benign, bio-...
Biopolymers, which are biodegradable and inherently functional, have high potential for specialized ...
Global warming, fossil fuel depletion and an increasing world population form the basis of many rese...
A series of plasticised chitosan-based materials and nanocomposites were successfully prepared by th...
Functional advanced biopolymers have received far less attention than renewable biomass (cellulose, ...
The focus of this research was to study the effect of combining nanofillers with different geometry ...
Since long scientists explored natural/bio-polymers to explicit their innate features to develop cer...
Blending with another biopolymer or nanomaterial can be an effective route to modify or tailor the p...
The formation and application of polymeric nanomaterials is great demandin science, industry, biotec...
Improvement in chitosan (CS) was achieved by solution casting using cellulose nanowhiskers (CNWs) an...
Afin de protéger les denrées alimentaires, l’industrie d’emballage enduit sur un film une couche trè...
Cellulose nanocrystals (CNCs) and/or sepiolite (SPT) were thermomechanically mixed with un-plasticis...
Biopolymers such as chitosan and cellulose continue to attract much interest as they have many appea...
The interest in biopolymers has increased due to the depletion of the fossil fuel reserve and the en...
Thermosensitive polymers are materials capable of undergoing a reversible phase transition in aqueou...
Chitosan and gelatin are attractive polymeric feedstocks for developing environmentally benign, bio-...
Biopolymers, which are biodegradable and inherently functional, have high potential for specialized ...
Global warming, fossil fuel depletion and an increasing world population form the basis of many rese...
A series of plasticised chitosan-based materials and nanocomposites were successfully prepared by th...
Functional advanced biopolymers have received far less attention than renewable biomass (cellulose, ...