Directing the spatial organization of functional supramolecular and polymeric materials at larger length scales is essential for many biological and molecular optoelectronic applications. Although the application of electrical fields is one of the most powerful approaches to induce spatial control, it is rarely applied experimentally in aqueous solutions, since the low susceptibility of soft and biological materials requires the use of high fields, which leads to parasitic heating and electrochemical degradation. In this work, we demonstrate that we can apply electric fields when we use a mineral liquid crystal as a responsive template. Besides aligning and positioning functional soft matter, we show that the concentration of the liquid cry...
The ability to pattern material response, voxel-by-voxel, to direct actuation and manipulation in ma...
International audienceWe have studied the effect of an electric field on a binary mixture between a ...
When nematic liquid crystals are embedded in random polymer networks, the disordered environment dis...
Directing the spatial organization of functional supramolecular and polymeric materials at larger le...
Contains fulltext : 161425.pdf (publisher's version ) (Open Access)Controlling the...
Morphological properties of surfaces play a key role in natural and man-made objects. The developmen...
Controlling the organization of functional supramolecular materials at both short and long length sc...
The study of controlling the molecular self-assembly of aqueous soft matter is a fundamental scheme ...
We present experiments in which we use an electric field to switch between different configurations ...
We study how dispersions of colloidal particles in a cholesteric liquid crystal behave under a time-...
We study how dispersions of colloidal particles in a cholesteric liquid crystal behave under a time-...
Liquid crystalline materials are interesting organic molecules possessing anisotropic behaviour. The...
Transport of fluids and particles at the microscale is an important theme in both fundamental and ap...
The ability to pattern material response, voxel-by-voxel, to direct actuation and manipulation in ma...
International audienceWe have studied the effect of an electric field on a binary mixture between a ...
When nematic liquid crystals are embedded in random polymer networks, the disordered environment dis...
Directing the spatial organization of functional supramolecular and polymeric materials at larger le...
Contains fulltext : 161425.pdf (publisher's version ) (Open Access)Controlling the...
Morphological properties of surfaces play a key role in natural and man-made objects. The developmen...
Controlling the organization of functional supramolecular materials at both short and long length sc...
The study of controlling the molecular self-assembly of aqueous soft matter is a fundamental scheme ...
We present experiments in which we use an electric field to switch between different configurations ...
We study how dispersions of colloidal particles in a cholesteric liquid crystal behave under a time-...
We study how dispersions of colloidal particles in a cholesteric liquid crystal behave under a time-...
Liquid crystalline materials are interesting organic molecules possessing anisotropic behaviour. The...
Transport of fluids and particles at the microscale is an important theme in both fundamental and ap...
The ability to pattern material response, voxel-by-voxel, to direct actuation and manipulation in ma...
International audienceWe have studied the effect of an electric field on a binary mixture between a ...
When nematic liquid crystals are embedded in random polymer networks, the disordered environment dis...