The review is devoted to the physical, chemical, and technological aspects of the breath-figure self-assembly process. The main stages of the process and impact of the polymer architecture and physical parameters of breath-figure self-assembly on the eventual pattern are covered. The review is focused on the hierarchy of spatial and temporal scales inherent to breath-figure self-assembly. Multi-scale patterns arising from the process are addressed. The characteristic spatial lateral scales of patterns vary from nanometers to dozens of micrometers. The temporal scale of the process spans from microseconds to seconds. The qualitative analysis performed in the paper demonstrates that the process is mainly governed by interfacial phenomena, whe...
Breath figure (BF) process is a promising technique for fabricating honeycomb polymer films. It is u...
Employing amphiphilic block copolymers in a casting process to obtain honeycomb-structured films via...
An in-depth understanding of dynamic interfacial self-assembly processes is essential for a wide ran...
The review is devoted to the physical, chemical, and technological aspects of the breath-figure self...
The architecture of polymers plays a crucial role in self-assembly processes. However, the effect of...
The formation of hierarchically ordered arrays of spherical cavities on polymer films is of interest...
International audienceNowadays, a challenge in the preparation of hierarchically ordered materials i...
The generation of ordered porous polymer structures by the breath figures (BFs) method has long been...
AbstractSince its introduction in 1994, the preparation of ordered porous polymer films by the breat...
ABSTRACT: We have reported an interesting method, named reverse breath figure, for the preparation o...
Herein, a facile water-assisted templating approach, the so-called breath figures method, has been e...
A breath figure (BF) is the water droplet array that forms when moisture comes in contact with a col...
This work provides additional insights into the identification of operating conditions necessary to ...
A robust asphalt-assisted breath figure templating approach has been developed for general fabricati...
The breath figure method, which is used to form porous films from water droplet templates, has attra...
Breath figure (BF) process is a promising technique for fabricating honeycomb polymer films. It is u...
Employing amphiphilic block copolymers in a casting process to obtain honeycomb-structured films via...
An in-depth understanding of dynamic interfacial self-assembly processes is essential for a wide ran...
The review is devoted to the physical, chemical, and technological aspects of the breath-figure self...
The architecture of polymers plays a crucial role in self-assembly processes. However, the effect of...
The formation of hierarchically ordered arrays of spherical cavities on polymer films is of interest...
International audienceNowadays, a challenge in the preparation of hierarchically ordered materials i...
The generation of ordered porous polymer structures by the breath figures (BFs) method has long been...
AbstractSince its introduction in 1994, the preparation of ordered porous polymer films by the breat...
ABSTRACT: We have reported an interesting method, named reverse breath figure, for the preparation o...
Herein, a facile water-assisted templating approach, the so-called breath figures method, has been e...
A breath figure (BF) is the water droplet array that forms when moisture comes in contact with a col...
This work provides additional insights into the identification of operating conditions necessary to ...
A robust asphalt-assisted breath figure templating approach has been developed for general fabricati...
The breath figure method, which is used to form porous films from water droplet templates, has attra...
Breath figure (BF) process is a promising technique for fabricating honeycomb polymer films. It is u...
Employing amphiphilic block copolymers in a casting process to obtain honeycomb-structured films via...
An in-depth understanding of dynamic interfacial self-assembly processes is essential for a wide ran...