Nature has been producing cellulose since long before man walked the surface of the earth. Millions of years of natural design and testing have resulted in cellulose-based structures that are an inspiration for the production of synthetic materials based on cellulose with properties that can mimic natural designs, functions, and properties. Here, five sections describe cellulose-based materials with characteristics that are inspired by gratings that exist on the petals of the plants, structurally colored materials, helical filaments produced by plants, water-responsive materials in plants, and environmental stimuli-responsive tissues found in insects and plants. The synthetic cellulose-based materials described herein are in the form of fib...
Cellulose, a linear biopolymer, is present naturally in all plants. Apart from being the planet’s pr...
Cellulose is the most abundant natural polymer on earth, constituting a virtually inexhaustible sour...
There is an emerging quest for lightweight materials with excellent mechanical properties and econom...
Nature has been producing cellulose since long before man walked the surface of the earth. Millions ...
Biomimetics is a field of science that investigates biological structures and processes for their us...
Biomimetics is a field of science that investigates biological structures and processes for their us...
As the most important skeletal component in plants, the polysaccharide cellulose is an almost inexha...
The structural support of plant cells is provided by the cell wall, which major load-bearing compone...
Wide use of bio-based polymers could play a key role in facilitating a more sustainable society beca...
Wide use of bio-based polymers could play a key role in facilitating a more sustainable society beca...
In the effort toward sustainable advanced functional materials, nanocelluloses have attracted extens...
Biomimetics is the field of obtaining ideas from nature that can be applied in science, engineering,...
In the effort toward sustainable advanced functional materials, nanocelluloses have attracted extens...
Cellulose, an abundant and renewable material, that can be utilized as a nanomaterial as well as mac...
Cellulose, an abundant and renewable material, that can be utilized as a nanomaterial as well as mac...
Cellulose, a linear biopolymer, is present naturally in all plants. Apart from being the planet’s pr...
Cellulose is the most abundant natural polymer on earth, constituting a virtually inexhaustible sour...
There is an emerging quest for lightweight materials with excellent mechanical properties and econom...
Nature has been producing cellulose since long before man walked the surface of the earth. Millions ...
Biomimetics is a field of science that investigates biological structures and processes for their us...
Biomimetics is a field of science that investigates biological structures and processes for their us...
As the most important skeletal component in plants, the polysaccharide cellulose is an almost inexha...
The structural support of plant cells is provided by the cell wall, which major load-bearing compone...
Wide use of bio-based polymers could play a key role in facilitating a more sustainable society beca...
Wide use of bio-based polymers could play a key role in facilitating a more sustainable society beca...
In the effort toward sustainable advanced functional materials, nanocelluloses have attracted extens...
Biomimetics is the field of obtaining ideas from nature that can be applied in science, engineering,...
In the effort toward sustainable advanced functional materials, nanocelluloses have attracted extens...
Cellulose, an abundant and renewable material, that can be utilized as a nanomaterial as well as mac...
Cellulose, an abundant and renewable material, that can be utilized as a nanomaterial as well as mac...
Cellulose, a linear biopolymer, is present naturally in all plants. Apart from being the planet’s pr...
Cellulose is the most abundant natural polymer on earth, constituting a virtually inexhaustible sour...
There is an emerging quest for lightweight materials with excellent mechanical properties and econom...