Ionically-conductive and stretchable hydrogels are ideally suited for the synthesis of flexible electronic devices. However, conventional hydrogels undergo dehydration at ambient conditions and freeze at subzero temperatures, limiting their functions. As an alternative to counteract these limitations, we propose double network hydrogels that are easily synthesized by a one-step acrylamide (AM) polymerization in the presence of cellulose nanofibrils (CNF) and LiCl. Following molecular dynamics simulation, thermogravimetric and spectroscopic (Raman and low-field nuclear magnetic resonance) analyses, we show that LiCl increases the interactions between the colloidal phase and water molecules, ensuring water holding capability at atmospheric co...
TEMPO-oxidized cellulose nanofibrils (TOCN) are pH-responsive biopolymers which undergo sol–gel tran...
Hydrogels are increasingly used in flexible electronic devices, but the mechanical and electrochemic...
It is significant to design stretchable conductive hydrogels with high integrated mechanical and exc...
Ionically-conductive and stretchable hydrogels are ideally suited for the synthesis of flexible elec...
As the most promising candidate for replacing conventional rigid and brittle inorganic conductive ma...
Tunable dynamic networks of cellulose nanofibrils (CNFs) are utilized to prepare high-performance po...
High-performance hydrogel electrolytes play a crucial role in flexible supercapacitors (SCs). Howeve...
Due to their quasi solid state and high ionic conductivity, hydrogel electrolytes have great potenti...
| openaire: EC/H2020/788489/EU//BioELCellCellulose-based xerogels, cryogels and aerogels have been p...
Recently, flexible electrolytes have aroused tremendous interest due to their wide applications in f...
Nanocellulose-reinforced ionic conductive hydrogels were prepared using cellulose nanofiber (CNF) an...
Phase change materials as a potential passive cooling solution is widely used to cool electronic dev...
Composite ionic-covalent entanglement (ICE) hydrogel networks were prepared from poly(N-isopropylacr...
Hydrogels with high electrical conductivity and mechanical stretchability are promising materials fo...
Hydrogels formed by cellulose nanofibers (CNFs) find use in a variety of applications. CNF hydrogels...
TEMPO-oxidized cellulose nanofibrils (TOCN) are pH-responsive biopolymers which undergo sol–gel tran...
Hydrogels are increasingly used in flexible electronic devices, but the mechanical and electrochemic...
It is significant to design stretchable conductive hydrogels with high integrated mechanical and exc...
Ionically-conductive and stretchable hydrogels are ideally suited for the synthesis of flexible elec...
As the most promising candidate for replacing conventional rigid and brittle inorganic conductive ma...
Tunable dynamic networks of cellulose nanofibrils (CNFs) are utilized to prepare high-performance po...
High-performance hydrogel electrolytes play a crucial role in flexible supercapacitors (SCs). Howeve...
Due to their quasi solid state and high ionic conductivity, hydrogel electrolytes have great potenti...
| openaire: EC/H2020/788489/EU//BioELCellCellulose-based xerogels, cryogels and aerogels have been p...
Recently, flexible electrolytes have aroused tremendous interest due to their wide applications in f...
Nanocellulose-reinforced ionic conductive hydrogels were prepared using cellulose nanofiber (CNF) an...
Phase change materials as a potential passive cooling solution is widely used to cool electronic dev...
Composite ionic-covalent entanglement (ICE) hydrogel networks were prepared from poly(N-isopropylacr...
Hydrogels with high electrical conductivity and mechanical stretchability are promising materials fo...
Hydrogels formed by cellulose nanofibers (CNFs) find use in a variety of applications. CNF hydrogels...
TEMPO-oxidized cellulose nanofibrils (TOCN) are pH-responsive biopolymers which undergo sol–gel tran...
Hydrogels are increasingly used in flexible electronic devices, but the mechanical and electrochemic...
It is significant to design stretchable conductive hydrogels with high integrated mechanical and exc...