The development of green and facile synthesis techniques for flexible, transparent, and conductive films (FTCFs) is in great demand with the rapid consumption of electronics. Herein, we report the environmentally friendly and one-pot fabrication of regenerated cellulose nanofibers (CNFs)/graphene FTCFs directly from raw materials of cellulose and graphite based on ionic liquid. Prepared FTCFs exhibit simultaneous and extraordinary improvement of tensile strength (135.4%) and toughness (459.1%) with graphene loading of only 0.1 wt %. In addition to the contribution of graphene sheets as reinforced filler, the morphology analysis reveals that the diameter size of regenerated CNF plays the key role in tailoring the mechanical properties of reg...
Abstract Cellulose nanoparticles are promising sustainable nanosized materials for use, for example,...
Bacterial cellulose (BC) and graphene are materials that have attracted the attention of researchers...
There is no doubt that nanofibrous materials are among the most opportune materials used in advanced...
Green nanocomposites of regenerated cellulose/exfoliated graphite nanosheets films with low nanofill...
Nanocomposites of regenerated cellulose containing different amounts of graphene nanoplatelets (GNPs...
With the fast-developing social economy and the acceleration of industrialization, seeking effective...
Graphene films promise great application potential in modern electronic devices due to their superio...
Nanofibrillated cellulose (NFC) is a natural fibrillar material with exceptionally high mechanical p...
In recent years, the development of environmentally friendly materials obtained from renewable resou...
AbstractA key challenge in the preparation of nanoplatelet-filled polymer composites is the ability ...
The excellent functional properties of graphene and micro-nanofibrillated cellulose (MNFC) offer ple...
Cellulose nanopaper is a strong lightweight material made from renewable resources with a wide range...
Cellulose is the most abundant polymeric source on earth, and it has been used for centuries in diff...
The conductive multiwalled carbon nanotubes (MWCNTs)-graphene sheets (rGOs)-cellulose fiber was prep...
While tremendous efforts have been dedicated to developing environmentally friendly films made from ...
Abstract Cellulose nanoparticles are promising sustainable nanosized materials for use, for example,...
Bacterial cellulose (BC) and graphene are materials that have attracted the attention of researchers...
There is no doubt that nanofibrous materials are among the most opportune materials used in advanced...
Green nanocomposites of regenerated cellulose/exfoliated graphite nanosheets films with low nanofill...
Nanocomposites of regenerated cellulose containing different amounts of graphene nanoplatelets (GNPs...
With the fast-developing social economy and the acceleration of industrialization, seeking effective...
Graphene films promise great application potential in modern electronic devices due to their superio...
Nanofibrillated cellulose (NFC) is a natural fibrillar material with exceptionally high mechanical p...
In recent years, the development of environmentally friendly materials obtained from renewable resou...
AbstractA key challenge in the preparation of nanoplatelet-filled polymer composites is the ability ...
The excellent functional properties of graphene and micro-nanofibrillated cellulose (MNFC) offer ple...
Cellulose nanopaper is a strong lightweight material made from renewable resources with a wide range...
Cellulose is the most abundant polymeric source on earth, and it has been used for centuries in diff...
The conductive multiwalled carbon nanotubes (MWCNTs)-graphene sheets (rGOs)-cellulose fiber was prep...
While tremendous efforts have been dedicated to developing environmentally friendly films made from ...
Abstract Cellulose nanoparticles are promising sustainable nanosized materials for use, for example,...
Bacterial cellulose (BC) and graphene are materials that have attracted the attention of researchers...
There is no doubt that nanofibrous materials are among the most opportune materials used in advanced...