In this paper, a simple and powerful method to control the induced handedness of helical nanofilaments (HNFs) is presented. The nanofilaments are formed by achiral bent-core liquid crystal molecules employing a cholesteric liquid crystal field obtained by doping a rod-like nematogen with a chiral dopant. Homochiral helical nanofilaments are formed in the nanophase-separated helical nanofilament/cholesteric phase from a mixture with a cholesteric phase. This cholesteric phase forms at a temperature higher than the temperature at which the helical nanofilament in a bent-core molecule appears. Under such conditions, the cholesteric liquid crystal field acts as a driving force in the nucleation of HNFs, realizing a perfectly homochiral domain c...
Despite recent advances in synthetic nanometer-scale helical assembly, control of supramolecular chi...
Nanoparticles tend to aggregate once integrated into soft matter and consequently, self-assembling n...
International audienceIn 1968, P.G. de Gennes and R.B. Meyer independently predicted that a choleste...
Herein, it is reported that the polymorphism in the helical nanofilament (HNF, B-4) liquid-crystalli...
https://kent-islandora.s3.us-east-2.amazonaws.com/node/14391/83901-thumbnail.jpgThe coupling between...
Helical particles are ubiquitous in nature. Many natural and synthetic biomolecules like polynucleot...
The B4 helical nanofilament (HNF) liquid crystal (LC) phase is a three-dimensional (3D) helical stru...
We successfully prepared controlled layers of NOBOW molecules on a variety of self-assembled monolay...
Transferring structural information from the nanoscale to the macroscale is a promising strategy for...
A unique morphology for bent-core liquid crystals forming the B4 phase has been found for a class of...
International audienceThe helicoidal structure of the cholesteric liquid crystal phase can be untwis...
The range of possible morphologies for bent‐core B4 phase liquid crystals has recently expanded from...
A state of matter in which molecules show a long-range orientational order and no positional order i...
The helical structure of the chiral nematic phases (cholesterics) obtained by doping nematic solvent...
Smart materials adapt to, rather than resist, changes to their environment. In Nature, a variety of ...
Despite recent advances in synthetic nanometer-scale helical assembly, control of supramolecular chi...
Nanoparticles tend to aggregate once integrated into soft matter and consequently, self-assembling n...
International audienceIn 1968, P.G. de Gennes and R.B. Meyer independently predicted that a choleste...
Herein, it is reported that the polymorphism in the helical nanofilament (HNF, B-4) liquid-crystalli...
https://kent-islandora.s3.us-east-2.amazonaws.com/node/14391/83901-thumbnail.jpgThe coupling between...
Helical particles are ubiquitous in nature. Many natural and synthetic biomolecules like polynucleot...
The B4 helical nanofilament (HNF) liquid crystal (LC) phase is a three-dimensional (3D) helical stru...
We successfully prepared controlled layers of NOBOW molecules on a variety of self-assembled monolay...
Transferring structural information from the nanoscale to the macroscale is a promising strategy for...
A unique morphology for bent-core liquid crystals forming the B4 phase has been found for a class of...
International audienceThe helicoidal structure of the cholesteric liquid crystal phase can be untwis...
The range of possible morphologies for bent‐core B4 phase liquid crystals has recently expanded from...
A state of matter in which molecules show a long-range orientational order and no positional order i...
The helical structure of the chiral nematic phases (cholesterics) obtained by doping nematic solvent...
Smart materials adapt to, rather than resist, changes to their environment. In Nature, a variety of ...
Despite recent advances in synthetic nanometer-scale helical assembly, control of supramolecular chi...
Nanoparticles tend to aggregate once integrated into soft matter and consequently, self-assembling n...
International audienceIn 1968, P.G. de Gennes and R.B. Meyer independently predicted that a choleste...