Current research demonstrates the delignification of natural wood (NW) by chemical treatment. In our research, the delignified wood (DW) is impregnated with bio-compatible and bio-degradable polymer to create transparent wood (TW). By incorporating such natural polymers, we have also given way to flexibility in the TW. Additionally, the resultant TW was further modified to have electrical conductivity by incorporating silver nanowires (AgNWs). Such modified wood (MW) would have tremendous potential in optoelectronics, energy storage, and biomedical devices. We characterize samples with FTIR, UV-vis, XRD, EDX, and SEM and further testing for energy storage capabilities
| openaire: EC/H2020/788489/EU//BioELCell Funding Information: The authors acknowledge funding suppo...
Transparent wood is a sustainable material. This material is promising material becomes one of the s...
Sustainable wood nanotechnologies that combine optical transmittance and mechanical performance are ...
Current research demonstrates the delignification of natural wood (NW) by chemical treatment. In our...
Current research demonstrates the delignification of natural wood (NW) by chemical treatment. In our...
The development of large, multifunctional structures from sustainable wood nanomaterials is challeng...
The development of large, multifunctional structures from sustainable wood nanomaterials is challeng...
Optically transparent wood, combining optical and mechanical performance, is an emerging new materia...
Wood templates are promising biobased substrates that can be functionalized for controlled nanostruc...
Wood templates are promising biobased substrates that can be functionalized for controlled nanostruc...
In this thesis, wood nanotechnologies for transparent, fire-retardant and hydrophobic/lipophilic woo...
The rational design of high-performance, flexible, transparent, electrically conducting sensor attra...
Wood templates are promising biobased substrates that can be functionalized for controlled nanostruc...
In this thesis, wood nanotechnologies for transparent, fire-retardant and hydrophobic/lipophilic woo...
Sustainable wood nanotechnologies that combine optical transmittance and mechanical performance are ...
| openaire: EC/H2020/788489/EU//BioELCell Funding Information: The authors acknowledge funding suppo...
Transparent wood is a sustainable material. This material is promising material becomes one of the s...
Sustainable wood nanotechnologies that combine optical transmittance and mechanical performance are ...
Current research demonstrates the delignification of natural wood (NW) by chemical treatment. In our...
Current research demonstrates the delignification of natural wood (NW) by chemical treatment. In our...
The development of large, multifunctional structures from sustainable wood nanomaterials is challeng...
The development of large, multifunctional structures from sustainable wood nanomaterials is challeng...
Optically transparent wood, combining optical and mechanical performance, is an emerging new materia...
Wood templates are promising biobased substrates that can be functionalized for controlled nanostruc...
Wood templates are promising biobased substrates that can be functionalized for controlled nanostruc...
In this thesis, wood nanotechnologies for transparent, fire-retardant and hydrophobic/lipophilic woo...
The rational design of high-performance, flexible, transparent, electrically conducting sensor attra...
Wood templates are promising biobased substrates that can be functionalized for controlled nanostruc...
In this thesis, wood nanotechnologies for transparent, fire-retardant and hydrophobic/lipophilic woo...
Sustainable wood nanotechnologies that combine optical transmittance and mechanical performance are ...
| openaire: EC/H2020/788489/EU//BioELCell Funding Information: The authors acknowledge funding suppo...
Transparent wood is a sustainable material. This material is promising material becomes one of the s...
Sustainable wood nanotechnologies that combine optical transmittance and mechanical performance are ...