The correlation between structure of chiral molecules and macroscopic properties of cholesteric phases is not obvious, but often the experimental behaviour can be rationalised by resorting to simple rules. However, there are cases in which solvent / temperature changes or introduction of substituents in the chiral molecules can produce dramatic and unexpected effects, including helix inversion. Some significant examples will be presented and discussed on the basis of theoretical predictions derived by the \u2018surface tensor\u2019 mean field model for molecular structures optimised with quantum-mechanical methods
The twist-bend nematic phase is a recently discovered liquid-crystalline phase that exhibits macrosc...
A state of matter in which molecules show a long-range orientational order and no positional order i...
In this paper, for the first time, a systematic experimental and theoretical analysis of the cholest...
The correlation between structure of chiral molecules and macroscopic properties of cholesteric phas...
A molecular theory of the helical twisting in chiral liquid crystals is developed, which provides an...
An extension to chiral phases of a model derived previously to interpret orientational properties in...
We investigate the pitch sensitivity of chiral nematic phases of helicoidal patchy cylinders as a ge...
The twisting power of chiral probes in nematics is interpreted in terms of a shape model, in which t...
One of the interesting questions related to bent-shaped materials is how structural chirality of the...
The surface model that was originally developed for evaluating the twisting power of chiral solutes ...
A phenomenological theory for the cholesteric phase induced by a chiral solute in a nematic solvent ...
The helical structure of the chiral nematic phases induced by chiral dopants in nematic solvents pro...
We present a microscopic analysis of the instability of the nematic phase to chirality when molecula...
We have studied chiral induction in a nematic in contact with a chiral surface using computer simula...
Some electrooptic and thermooptic effects of cholesteric phase are used in liquid crystal visualisat...
The twist-bend nematic phase is a recently discovered liquid-crystalline phase that exhibits macrosc...
A state of matter in which molecules show a long-range orientational order and no positional order i...
In this paper, for the first time, a systematic experimental and theoretical analysis of the cholest...
The correlation between structure of chiral molecules and macroscopic properties of cholesteric phas...
A molecular theory of the helical twisting in chiral liquid crystals is developed, which provides an...
An extension to chiral phases of a model derived previously to interpret orientational properties in...
We investigate the pitch sensitivity of chiral nematic phases of helicoidal patchy cylinders as a ge...
The twisting power of chiral probes in nematics is interpreted in terms of a shape model, in which t...
One of the interesting questions related to bent-shaped materials is how structural chirality of the...
The surface model that was originally developed for evaluating the twisting power of chiral solutes ...
A phenomenological theory for the cholesteric phase induced by a chiral solute in a nematic solvent ...
The helical structure of the chiral nematic phases induced by chiral dopants in nematic solvents pro...
We present a microscopic analysis of the instability of the nematic phase to chirality when molecula...
We have studied chiral induction in a nematic in contact with a chiral surface using computer simula...
Some electrooptic and thermooptic effects of cholesteric phase are used in liquid crystal visualisat...
The twist-bend nematic phase is a recently discovered liquid-crystalline phase that exhibits macrosc...
A state of matter in which molecules show a long-range orientational order and no positional order i...
In this paper, for the first time, a systematic experimental and theoretical analysis of the cholest...