This work provides additional insights into the identification of operating conditions necessary to overcome a current limitation to the scale-up of the breath figure method, which is regarded as an outstanding manufacturing approach for structurally ordered porous films. The major restriction concerns, indeed, uncontrolled touching droplets at the boundary. Herein, the bulk of polymeric solutions are properly managed to generate honeycomb membranes with a long-range structurally ordered texture. Water uptake and dynamics are explored as chemical environments are changed with the intent to modify the hydrophilic/hydrophobic balance and local water floatation. In this context, a model surfactant such as the polyoxyethylene sorbitan monolaura...
Inspired by biological attachment systems, we fabricated the honeycomb structural films with differe...
This dissertation studies and examines the process of formation of honeycomb structured porous films...
Employing amphiphilic block copolymers in a casting process to obtain honeycomb-structured films via...
This work provides additional insights into the identification of operating conditions necessary to ...
AbstractSince its introduction in 1994, the preparation of ordered porous polymer films by the breat...
Porous polymer films are used in various different fields such as electronics, sensors, biomedical, ...
While many honeycombed films have been recently produced using the vapour induced phase inversion or...
In recent times, it was divulged that highly ordered honeycomb structured porous films from a variet...
Honeycomb structured porous materials were formed using four different casting variations of the wat...
The breath figure method, which is used to form porous films from water droplet templates, has attra...
International audienceHoneycomb-patterned porous films with good surface wettability have great pote...
Honeycomb porous films prepared by the breath figure method show great potential in fields such as t...
The “breath figures” method provides an efficient and cost-effective method to produce highly ordere...
none3The generation of ordered porous polymer structures by the breath figures (BFs) method has long...
PACS 83.80.Rs – Polymer solutions Abstract – Dew or breath figures is a disordered pattern formed by...
Inspired by biological attachment systems, we fabricated the honeycomb structural films with differe...
This dissertation studies and examines the process of formation of honeycomb structured porous films...
Employing amphiphilic block copolymers in a casting process to obtain honeycomb-structured films via...
This work provides additional insights into the identification of operating conditions necessary to ...
AbstractSince its introduction in 1994, the preparation of ordered porous polymer films by the breat...
Porous polymer films are used in various different fields such as electronics, sensors, biomedical, ...
While many honeycombed films have been recently produced using the vapour induced phase inversion or...
In recent times, it was divulged that highly ordered honeycomb structured porous films from a variet...
Honeycomb structured porous materials were formed using four different casting variations of the wat...
The breath figure method, which is used to form porous films from water droplet templates, has attra...
International audienceHoneycomb-patterned porous films with good surface wettability have great pote...
Honeycomb porous films prepared by the breath figure method show great potential in fields such as t...
The “breath figures” method provides an efficient and cost-effective method to produce highly ordere...
none3The generation of ordered porous polymer structures by the breath figures (BFs) method has long...
PACS 83.80.Rs – Polymer solutions Abstract – Dew or breath figures is a disordered pattern formed by...
Inspired by biological attachment systems, we fabricated the honeycomb structural films with differe...
This dissertation studies and examines the process of formation of honeycomb structured porous films...
Employing amphiphilic block copolymers in a casting process to obtain honeycomb-structured films via...