Hydrophobic layers are generated and chemisorbed onto standard coating materials for photovoltaic (PV) devices in order to improve their barrier properties against the atmospheric degradation agents and achieve a higher lifetime for the coated devices. The hydrophobic layers are deposited on PET-–SiOx substrates using two different molecules (alkylsilanes and fluoroalkylsilanes) as precursors. High liquid barrier properties are achieved for the fluoroalkylsilane coated PET-–SiOx, best results being average water contact angle > 130° and average oil contact angle > 90°. A chemical mechanism hypothesis is provided in order to explain the different reactive behavior observed for the PET-–SiOx samples with alkylsilanes and fluoroalkylsilanes, r...
This thesis investigates how to improve transparent flexible water vapour barriers by understanding ...
Barrier materials are required for encapsulating organic devices. A simple methodology based on orga...
The encapsulation of the active layers (organic semiconductors, electrodes, transparent conductive o...
Hydrophobic layers are generated and chemisorbed onto standard coating materials for photovoltaic (P...
Leveraging the durability of photovoltaic (PV) plants at an acceptable cost is becoming one of the m...
The need of enhancing the protection of photovoltaic (PV) devices from the atmospheric degradation a...
Inorganic⁻organic multilayer films consisting of polymers coated with thin inorganic oxidic la...
Inorganic-organic multilayer films consisting of polymers coated with thin inorganic oxidic layers (...
Barrier coatings are a category of functional films designed to enhance enduse properties to the un...
A multibarrier nanocoating is proposed, for enhancing the photovoltaic devices durability by integra...
Flexible and organic electronic devices for photovoltaic, display and lighting application attract g...
Based on results of preceding research and development, thin gas barriers were made by wet applicati...
A multilayer, flexible, and transparent high-barrier system based on flexible plastic foils, polyeth...
This thesis investigates how to improve transparent flexible water vapour barriers by understanding ...
Barrier materials are required for encapsulating organic devices. A simple methodology based on orga...
The encapsulation of the active layers (organic semiconductors, electrodes, transparent conductive o...
Hydrophobic layers are generated and chemisorbed onto standard coating materials for photovoltaic (P...
Leveraging the durability of photovoltaic (PV) plants at an acceptable cost is becoming one of the m...
The need of enhancing the protection of photovoltaic (PV) devices from the atmospheric degradation a...
Inorganic⁻organic multilayer films consisting of polymers coated with thin inorganic oxidic la...
Inorganic-organic multilayer films consisting of polymers coated with thin inorganic oxidic layers (...
Barrier coatings are a category of functional films designed to enhance enduse properties to the un...
A multibarrier nanocoating is proposed, for enhancing the photovoltaic devices durability by integra...
Flexible and organic electronic devices for photovoltaic, display and lighting application attract g...
Based on results of preceding research and development, thin gas barriers were made by wet applicati...
A multilayer, flexible, and transparent high-barrier system based on flexible plastic foils, polyeth...
This thesis investigates how to improve transparent flexible water vapour barriers by understanding ...
Barrier materials are required for encapsulating organic devices. A simple methodology based on orga...
The encapsulation of the active layers (organic semiconductors, electrodes, transparent conductive o...