Reducing the thickness of transparent paper without losing its outstanding optical haze and transmittance remains a challenge due to their trade-off relationship. Herein, an all-cellulose transparent paper composed of cellulose nanofibril (CNF) and carboxymethyl cellulose (CMC) is developed by electrophoretic deposition (EPD) thanks to the good film-forming ability of the CMC. The thickness of the paper can be controlled in the range of 2.4–30 μm depending on the applied voltage and deposition time. The optical properties and mechanical strength are adjusted by the sonication time and the ratio between CNF and CMC, since the CNF works as a light-scattering source and mechanical reinforcement agent. Consequently, a robust all-cellulose paper...
Increasing attention has been paid to the next generation of ‘green’ electronic devices based on ren...
Flexible electronics are developing rapidly due to promising applications in displays, sensors, and ...
Porous nanocellulose paper was fabricated and applied as a light outcoupling medium. The nanocellulo...
Wood fibers possess natural unique hierarchical and mesoporous structures that enable a variety of n...
Traditionally, inorganic nanoparticles (SiO2, TiO2) have been utilized to tune the optical haze of o...
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...
Manufacturing of electronic devices via printing techniques is often considered to be an environment...
We cannot see through ordinary paper because it's constituent micrometer sized cellulose fibers...
Nanopaper prepared from holocellulose pulp is one of the best substrates for flexible electronics be...
The aim of this study is to clarify light scattering mechanism of hazy transparent cellulose nanopap...
Solar cell substrates require high optical transparency but also prefer high optical haze to increas...
Over the past decades, electronic waste has accumulated and has increased by 21% in the last five ...
High optical transparency combined with high optical haze are essential requirements for optoelectro...
Nano-enabled, bio-based, functional materials are key for the transition to a sustainable society as...
Increasing attention has been paid to the next generation of ‘green’ electronic devices based on ren...
Flexible electronics are developing rapidly due to promising applications in displays, sensors, and ...
Porous nanocellulose paper was fabricated and applied as a light outcoupling medium. The nanocellulo...
Wood fibers possess natural unique hierarchical and mesoporous structures that enable a variety of n...
Traditionally, inorganic nanoparticles (SiO2, TiO2) have been utilized to tune the optical haze of o...
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...
Manufacturing of electronic devices via printing techniques is often considered to be an environment...
We cannot see through ordinary paper because it's constituent micrometer sized cellulose fibers...
Nanopaper prepared from holocellulose pulp is one of the best substrates for flexible electronics be...
The aim of this study is to clarify light scattering mechanism of hazy transparent cellulose nanopap...
Solar cell substrates require high optical transparency but also prefer high optical haze to increas...
Over the past decades, electronic waste has accumulated and has increased by 21% in the last five ...
High optical transparency combined with high optical haze are essential requirements for optoelectro...
Nano-enabled, bio-based, functional materials are key for the transition to a sustainable society as...
Increasing attention has been paid to the next generation of ‘green’ electronic devices based on ren...
Flexible electronics are developing rapidly due to promising applications in displays, sensors, and ...
Porous nanocellulose paper was fabricated and applied as a light outcoupling medium. The nanocellulo...