One central problem for the function and manufacture of materials where performance relies on nanoscale structure is to control the compatibility and interactions of the building blocks. In natural materials, such as nacre, there are examples of multifunctional macromolecules that have combined binding affinities for different materials within the same molecule, thereby bridging these materials and acting as a molecular glue. Here, we describe the use of a designed multifunctional protein that is used for self-assembly of nanofibrillar cellulose. Recent advances in the production of cellulose nanofibrils have given inspiration for new uses of cellulosic materials. Cellulose nanofibrils have mechanical and structural features that open new p...
Native cellulose nanocrystals (CNCs) are valuable high quality materials with potential for many app...
Native cellulose nanocrystals (CNCs) are valuable high quality materials with potential for many app...
This chapter highlights top-down and bottom-up approaches to generate ultra-fine cellulose fibers of...
One central problem for the function and manufacture of materials where performance relies on nanosc...
The increased concern about the environment and legislation pressure, such as plastic bag ban, has g...
Cellulose is an abundant biopolymer found in many different organisms ranging from microbes to plant...
Biological composites are typically based on an adhesive matrix that interlocks rigid reinforcing el...
Biological composites are typically based on an adhesive matrix that interlocks rigid reinforcing el...
Cellulose is an abundant biopolymer found in many different organisms ranging from microbes to plant...
Protein engineering shows a wide range of possibilities for designing properties in novel materials....
Protein engineering shows a wide range of possibilities for designing properties in novel materials....
Molecular biomimetic models suggest that proteins in the soft matrix of nanocomposites have a multim...
Molecular biomimetic models suggest that proteins in the soft matrix of nanocomposites have a multim...
There is an emerging quest for lightweight materials with excellent mechanical properties and econom...
There is an emerging quest for lightweight materials with excellent mechanical properties and econom...
Native cellulose nanocrystals (CNCs) are valuable high quality materials with potential for many app...
Native cellulose nanocrystals (CNCs) are valuable high quality materials with potential for many app...
This chapter highlights top-down and bottom-up approaches to generate ultra-fine cellulose fibers of...
One central problem for the function and manufacture of materials where performance relies on nanosc...
The increased concern about the environment and legislation pressure, such as plastic bag ban, has g...
Cellulose is an abundant biopolymer found in many different organisms ranging from microbes to plant...
Biological composites are typically based on an adhesive matrix that interlocks rigid reinforcing el...
Biological composites are typically based on an adhesive matrix that interlocks rigid reinforcing el...
Cellulose is an abundant biopolymer found in many different organisms ranging from microbes to plant...
Protein engineering shows a wide range of possibilities for designing properties in novel materials....
Protein engineering shows a wide range of possibilities for designing properties in novel materials....
Molecular biomimetic models suggest that proteins in the soft matrix of nanocomposites have a multim...
Molecular biomimetic models suggest that proteins in the soft matrix of nanocomposites have a multim...
There is an emerging quest for lightweight materials with excellent mechanical properties and econom...
There is an emerging quest for lightweight materials with excellent mechanical properties and econom...
Native cellulose nanocrystals (CNCs) are valuable high quality materials with potential for many app...
Native cellulose nanocrystals (CNCs) are valuable high quality materials with potential for many app...
This chapter highlights top-down and bottom-up approaches to generate ultra-fine cellulose fibers of...