Several approaches have recently been shown for self-assembled biomimetic composite films, aiming at combinations of high toughness, strength, and stiffness. However, it remains challenging to achieve high toughness using simple processes especially for bulk materials. We demonstrate that ionically interacting cationic native nanofibrillated cellulose (C-NFC) and anionic nanoclay, i.e. montmorillonite (MTM), allow local self-assemblies by a simple centrifugation process to achieve 3D bulk materials. The composite with MTM/C-NFC of 63/37 w/w has a high compressive strain to failure of 37% with distinct plastic deformation behaviour, a high work to fracture of 23.1 MJ m(-3), and a relatively high compression strength of 76 MPa. Unlike the con...
This work investigates the surface and bulk properties of nanofibrillated cellulose (NFC) and bacter...
Although advances have been reported to mimic the mechanically excellent structure of natural nacre,...
VK: T10413 50 %; T10402 50 %There is a growing interest to design biomimetic self-assembled composit...
Natural high performance materials inspire to pursue ordered hard/soft nanocomposite structures at h...
Cellulose is attracting increasing interest as a sustainable technological material, owing to its un...
Nanofibrillated cellulose (NFC) is a natural fibrillar material with exceptionally high mechanical p...
Cellulose nanofibrils (CNFs) are considered next generation, renewable reinforcements for sustainabl...
Cellulose is the most abundant polymeric source on earth, and it has been used for centuries in diff...
Cellulose nanofibrils (CNFs) are nanomaterials with promising properties to be used in food packagin...
Cellulose nanopaper is a strong lightweight material made from renewable resources with a wide range...
Natural materials such as nacre or wood gain their exceptional mechanical performances from the prec...
Cellulose nanofibrils (CNFs) are considered next generation, renewable reinforcements for sustainabl...
Composites of nanocellulose with layered silicates have recently emerged as a new type of composite ...
Although advances have been reported to mimic the mechanically excellent structure of natural nacre,...
Bioinspired nanocomposites have attracted considerable attention as robust, lightweight, and functio...
This work investigates the surface and bulk properties of nanofibrillated cellulose (NFC) and bacter...
Although advances have been reported to mimic the mechanically excellent structure of natural nacre,...
VK: T10413 50 %; T10402 50 %There is a growing interest to design biomimetic self-assembled composit...
Natural high performance materials inspire to pursue ordered hard/soft nanocomposite structures at h...
Cellulose is attracting increasing interest as a sustainable technological material, owing to its un...
Nanofibrillated cellulose (NFC) is a natural fibrillar material with exceptionally high mechanical p...
Cellulose nanofibrils (CNFs) are considered next generation, renewable reinforcements for sustainabl...
Cellulose is the most abundant polymeric source on earth, and it has been used for centuries in diff...
Cellulose nanofibrils (CNFs) are nanomaterials with promising properties to be used in food packagin...
Cellulose nanopaper is a strong lightweight material made from renewable resources with a wide range...
Natural materials such as nacre or wood gain their exceptional mechanical performances from the prec...
Cellulose nanofibrils (CNFs) are considered next generation, renewable reinforcements for sustainabl...
Composites of nanocellulose with layered silicates have recently emerged as a new type of composite ...
Although advances have been reported to mimic the mechanically excellent structure of natural nacre,...
Bioinspired nanocomposites have attracted considerable attention as robust, lightweight, and functio...
This work investigates the surface and bulk properties of nanofibrillated cellulose (NFC) and bacter...
Although advances have been reported to mimic the mechanically excellent structure of natural nacre,...
VK: T10413 50 %; T10402 50 %There is a growing interest to design biomimetic self-assembled composit...