Cellulose is the most abundant biopolymer on Earth. Cellulose fibers, such as the one extracted form cotton or woodpulp, have been used by humankind for hundreds of years to make textiles and paper. Here we show how, by engineering light-matter interaction, we can optimize light scattering using exclusively cellulose nanocrystals. The produced material is sustainable, biocompatible, and when compared to ordinary microfiber-based paper, it shows enhanced scattering strength (×4), yielding a transport mean free path as low as 3.5 μm in the visible light range. The experimental results are in a good agreement with the theoretical predictions obtained with a diffusive model for light propagation.This research was funded by the EPSRC (EP/M027961...
Cellulose is environmentally friendly material that has brought new possibilities for light guiding ...
Cellulose is environmentally friendly material that has brought new possibilities for light guiding ...
Nanofibrillated cellulose, a polymer that can be obtained from one of the most abundant biopolymers ...
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 fo...
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...
The possibility of structuring material at the nanoscale is essential to control light–matter intera...
The understanding of the interaction between light and complex, random structures is the key for des...
Abstract: The possibility of structuring material at the nanoscale is essential to control light–mat...
The aim of this study is to clarify light scattering mechanism of hazy transparent cellulose nanopap...
Wood fibers possess natural unique hierarchical and mesoporous structures that enable a variety of n...
Wood fibers possess natural unique hierarchical and mesoporous structures that enable a variety of n...
Wood fibers possess natural unique hierarchical and mesoporous structures that enable a variety of n...
Cellulose is environmentally friendly material that has brought new possibilities for light guiding ...
Cellulose is environmentally friendly material that has brought new possibilities for light guiding ...
Cellulose is environmentally friendly material that has brought new possibilities for light guiding ...
Nanofibrillated cellulose, a polymer that can be obtained from one of the most abundant biopolymers ...
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 fo...
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...
The possibility of structuring material at the nanoscale is essential to control light–matter intera...
The understanding of the interaction between light and complex, random structures is the key for des...
Abstract: The possibility of structuring material at the nanoscale is essential to control light–mat...
The aim of this study is to clarify light scattering mechanism of hazy transparent cellulose nanopap...
Wood fibers possess natural unique hierarchical and mesoporous structures that enable a variety of n...
Wood fibers possess natural unique hierarchical and mesoporous structures that enable a variety of n...
Wood fibers possess natural unique hierarchical and mesoporous structures that enable a variety of n...
Cellulose is environmentally friendly material that has brought new possibilities for light guiding ...
Cellulose is environmentally friendly material that has brought new possibilities for light guiding ...
Cellulose is environmentally friendly material that has brought new possibilities for light guiding ...
Nanofibrillated cellulose, a polymer that can be obtained from one of the most abundant biopolymers ...