Films comprising nanofibrillated cellulose (NFC) are suitable substrates for flexible devices in analytical, sensor, diagnostic, and display technologies. However, some major challenges in such developments include their high moisture sensitivity and the complexity of current methods available for functionalization and patterning. In this work, we present a facile process for tailoring the surface wettability and functionality of NFC films by a fast and versatile approach. First, the NFC films were coated with a layer of reactive nanoporous silicone nanofilament by polycondensation of trichlorovinylsilane (TCVS). The TCVS afforded reactive vinyl groups, thereby enabling simple UV-induced functionalization of NFC films with various thiol-con...
Reactive superhydrophobic surfaces are highly promising for biotechnological, analytical, sensor, or...
Reactive superhydrophobic surfaces are highly promising for biotechnological, analytical, sensor, or...
Reactive superhydrophobic surfaces are highly promising for biotechnological, analytical, sensor, or...
Films comprising nanofibrillated cellulose (NFC) are suitable substrates for flexible devices in ana...
We introduce a new method to modify films of nanofibrillated cellulose (NFC) to produce non-porous, ...
We introduce a new method to modify films of nanofibrillated cellulose (NFC) to produce non-porous, ...
In this study, we present a rapid method to prepare robust, solvent-resistant, nanofibrillated cellu...
In this study, we present a rapid method to prepare robust, solvent-resistant, nanofibrillated cellu...
VK: T10413In this study we present a rapid method to prepare robust, solvent resistant nanofibrillat...
VK: T10413In this study we present a rapid method to prepare robust, solvent resistant nanofibrillat...
Challenges on the manufacture of nanocellulose films are non-trivial when it comes to obtain large, ...
Challenges on the manufacture of nanocellulose films are non-trivial when it comes to obtain large, ...
Renewable and sustainable membrane systems are required in technological fields ranging from water p...
Renewable and sustainable membrane systems are required in technological fields ranging from water p...
In this study, we present a rapid method to prepare robust, solvent-resistant, nanofibrillated cellu...
Reactive superhydrophobic surfaces are highly promising for biotechnological, analytical, sensor, or...
Reactive superhydrophobic surfaces are highly promising for biotechnological, analytical, sensor, or...
Reactive superhydrophobic surfaces are highly promising for biotechnological, analytical, sensor, or...
Films comprising nanofibrillated cellulose (NFC) are suitable substrates for flexible devices in ana...
We introduce a new method to modify films of nanofibrillated cellulose (NFC) to produce non-porous, ...
We introduce a new method to modify films of nanofibrillated cellulose (NFC) to produce non-porous, ...
In this study, we present a rapid method to prepare robust, solvent-resistant, nanofibrillated cellu...
In this study, we present a rapid method to prepare robust, solvent-resistant, nanofibrillated cellu...
VK: T10413In this study we present a rapid method to prepare robust, solvent resistant nanofibrillat...
VK: T10413In this study we present a rapid method to prepare robust, solvent resistant nanofibrillat...
Challenges on the manufacture of nanocellulose films are non-trivial when it comes to obtain large, ...
Challenges on the manufacture of nanocellulose films are non-trivial when it comes to obtain large, ...
Renewable and sustainable membrane systems are required in technological fields ranging from water p...
Renewable and sustainable membrane systems are required in technological fields ranging from water p...
In this study, we present a rapid method to prepare robust, solvent-resistant, nanofibrillated cellu...
Reactive superhydrophobic surfaces are highly promising for biotechnological, analytical, sensor, or...
Reactive superhydrophobic surfaces are highly promising for biotechnological, analytical, sensor, or...
Reactive superhydrophobic surfaces are highly promising for biotechnological, analytical, sensor, or...