Predicting the macroscopic chiral behaviour of liquid crystals from the microscopic chirality of the particles is highly non-trivial, even when the chiral interactions are purely entropic in nature. Here we introduce a novel chiral hard-particle model, namely particles with a twisted polyhedral shape and obtain a stable fully entropy-driven cholesteric phase by computer simulations. By slightly modifying the triangular base of the particle, we are able to switch from a left-handed prolate (calamitic) to a right-handed oblate (discotic) cholesteric phase using the same right-handed twisted particle model. Furthermore, we show that not only prolate and oblate chiral nematic phases, but also other novel entropy-driven phases, namely chiral blu...
We introduce a simple model for a biaxial nematic liquid crystal. This consists of hard spheroids th...
International audienceRod-shaped colloids with attractive tips can form linear aggregates that may s...
Why should achiral particles organize into a helical structure? Here, using theory and molecular dyn...
Building a general theoretical framework to describe the microscopic origin of macroscopic chirality...
Even though chiral nematic phases were the first liquid crystals experimentally observed more than a...
We investigate the phase behavior of a system of hard equilateral and right-angled triangles in two ...
Recent numerical simulations of hard helical particle systems unveiled the existence of a novel chir...
In this thesis, we study entropy-driven phase transitions in suspensions of colloidal particles. Col...
We investigate the statistical mechanics of chirality and biaxiality in liquid crystals through a va...
We investigate the statistical mechanics of chirality and biaxiality in liquid crystals through a va...
We have studied chiral induction in a nematic in contact with a chiral surface using computer simula...
Helical particles are ubiquitous in nature. Many natural and synthetic biomolecules like polynucleot...
Helically nanostructured materials have been attracting increasing attention, also because of their ...
One of the interesting questions related to bent-shaped materials is how structural chirality of the...
Small alterations in the molecular details may produce noticeable changes in the symmetry of the res...
We introduce a simple model for a biaxial nematic liquid crystal. This consists of hard spheroids th...
International audienceRod-shaped colloids with attractive tips can form linear aggregates that may s...
Why should achiral particles organize into a helical structure? Here, using theory and molecular dyn...
Building a general theoretical framework to describe the microscopic origin of macroscopic chirality...
Even though chiral nematic phases were the first liquid crystals experimentally observed more than a...
We investigate the phase behavior of a system of hard equilateral and right-angled triangles in two ...
Recent numerical simulations of hard helical particle systems unveiled the existence of a novel chir...
In this thesis, we study entropy-driven phase transitions in suspensions of colloidal particles. Col...
We investigate the statistical mechanics of chirality and biaxiality in liquid crystals through a va...
We investigate the statistical mechanics of chirality and biaxiality in liquid crystals through a va...
We have studied chiral induction in a nematic in contact with a chiral surface using computer simula...
Helical particles are ubiquitous in nature. Many natural and synthetic biomolecules like polynucleot...
Helically nanostructured materials have been attracting increasing attention, also because of their ...
One of the interesting questions related to bent-shaped materials is how structural chirality of the...
Small alterations in the molecular details may produce noticeable changes in the symmetry of the res...
We introduce a simple model for a biaxial nematic liquid crystal. This consists of hard spheroids th...
International audienceRod-shaped colloids with attractive tips can form linear aggregates that may s...
Why should achiral particles organize into a helical structure? Here, using theory and molecular dyn...