The understanding of the interaction between light and complex, random structures is the key for designing and tailoring the optical appearance and performance of many materials that surround us, ranging from everyday consumer products, such as those for personal care, paints, and paper, to light diffusers used in the LED-lamps and solar cells. Here, it is demonstrated that the light transport in membranes of pure cellulose nanofibrils (CNFs) can be controlled to achieve bright whiteness in structures only a few micrometers thick. This is in contrast to other materials, such as paper, which require hundreds of micrometers to achieve a comparable appearance. The diffusion of light in the CNF membranes is shown to become anomalous by tuning t...
The use of cellulose nanocrystals (CNCs) in optical materials has been extensively studied. Key in m...
The use of cellulose nanocrystals (CNCs) in optical materials has been extensively studied. Key in m...
Structural colour is a phenomenon found in nature, which provides plants and animals with vibrant op...
The understanding of the interaction between light and complex, random structures is the key for des...
The understanding of the interaction between light and complex, random structures is the key for des...
Cellulose is the most abundant biopolymer on Earth. Cellulose fibers, such as the one extracted form...
Cellulose is the most abundant biopolymer on Earth. Cellulose fibers, such as the one extracted form...
The possibility of structuring material at the nanoscale is essential to control light–matter intera...
In the past few years, studies regarding new bio-based materials have led to an increased attention ...
: Cellulose is the most abundant biopolymer on Earth. Cellulose fibers, such as the one extracted fo...
In the past few years, studies regarding new bio-based materials have led to an increased attention ...
Abstract: The possibility of structuring material at the nanoscale is essential to control light–mat...
Structural colour is a phenomenon found in nature, which provides plants and animals with vibrant op...
Wood-derived sustainable materials like cellulose fibers have received increased attention for repla...
Wood-derived sustainable materials like cellulose fibers have received increased attention for repla...
The use of cellulose nanocrystals (CNCs) in optical materials has been extensively studied. Key in m...
The use of cellulose nanocrystals (CNCs) in optical materials has been extensively studied. Key in m...
Structural colour is a phenomenon found in nature, which provides plants and animals with vibrant op...
The understanding of the interaction between light and complex, random structures is the key for des...
The understanding of the interaction between light and complex, random structures is the key for des...
Cellulose is the most abundant biopolymer on Earth. Cellulose fibers, such as the one extracted form...
Cellulose is the most abundant biopolymer on Earth. Cellulose fibers, such as the one extracted form...
The possibility of structuring material at the nanoscale is essential to control light–matter intera...
In the past few years, studies regarding new bio-based materials have led to an increased attention ...
: Cellulose is the most abundant biopolymer on Earth. Cellulose fibers, such as the one extracted fo...
In the past few years, studies regarding new bio-based materials have led to an increased attention ...
Abstract: The possibility of structuring material at the nanoscale is essential to control light–mat...
Structural colour is a phenomenon found in nature, which provides plants and animals with vibrant op...
Wood-derived sustainable materials like cellulose fibers have received increased attention for repla...
Wood-derived sustainable materials like cellulose fibers have received increased attention for repla...
The use of cellulose nanocrystals (CNCs) in optical materials has been extensively studied. Key in m...
The use of cellulose nanocrystals (CNCs) in optical materials has been extensively studied. Key in m...
Structural colour is a phenomenon found in nature, which provides plants and animals with vibrant op...