Bacteriophage DNA fd-rods are long and stiff rod-like particles which are known to exhibit a rich equilibrium phase behavior. Due to their helical molecular structure, they form the stable chiral nematic (N*) mesophases. Very little is known about the kinetics of forming various phases with orientations. The present study addresses the kinetics of chiral-mesophases and N*-phase, by using a novel image-time correlation technique. Instead of correlating time-lapsed real-space microscopy images, the corresponding Fourier images are shown for time-correlated averaged orientations. This allows to unambiguously distinguish to detect the temporal evolution of orientations on different length scales, such as domain sizes (depending on their relativ...
DNA molecules form dense liquid-crystalline twisted phases both in vivo and in vitro. How the micros...
This review discusses liquid crystal phase formation by biopolymers in solution. Lyotropic mesophase...
Evidence of a special chiral nematic phase is provided using numerical simulation and Onsager theory...
Recently, the collective phase behaviors of charged DNA-viruses (rods) are explored in various low i...
International audienceWe describe the new type of liquid-crystalline state which is stabilized in co...
The phase behavior of fd-viruses (a filamentous DNA-virus) is strongly affected by ionic strength. I...
Concentrated solutions of duplex-forming DNA oligomers display various forms of liquid crystal order...
Long and thin, highly charged colloidal rods (fd-virus particles) exhibit a glass transition at a co...
The kinetics of isotropic-nematic(I-N) and nematic-isotropic (N-I) phase transitions in dispersions ...
Lyotropic cholesteric liquid crystal phases are ubiquitously observed in biological and synthetic po...
Concentrated solutions of ultra-short duplex forming DNA oligomers may develop various forms of liqu...
We study experimentally the nonequilibrium phase behaviour of a horizontal monolayer of macroscopic ...
Lyotropic chiral nematic liquid crystalline dispersions are a unique state of matter that can be exp...
Both non-equilibrium phase transitions and equilibrium textures of interacting charged chiral rods a...
AbstractThe nature of chiral interactions among chiral biopolymers, such as DNA, protein α-helices, ...
DNA molecules form dense liquid-crystalline twisted phases both in vivo and in vitro. How the micros...
This review discusses liquid crystal phase formation by biopolymers in solution. Lyotropic mesophase...
Evidence of a special chiral nematic phase is provided using numerical simulation and Onsager theory...
Recently, the collective phase behaviors of charged DNA-viruses (rods) are explored in various low i...
International audienceWe describe the new type of liquid-crystalline state which is stabilized in co...
The phase behavior of fd-viruses (a filamentous DNA-virus) is strongly affected by ionic strength. I...
Concentrated solutions of duplex-forming DNA oligomers display various forms of liquid crystal order...
Long and thin, highly charged colloidal rods (fd-virus particles) exhibit a glass transition at a co...
The kinetics of isotropic-nematic(I-N) and nematic-isotropic (N-I) phase transitions in dispersions ...
Lyotropic cholesteric liquid crystal phases are ubiquitously observed in biological and synthetic po...
Concentrated solutions of ultra-short duplex forming DNA oligomers may develop various forms of liqu...
We study experimentally the nonequilibrium phase behaviour of a horizontal monolayer of macroscopic ...
Lyotropic chiral nematic liquid crystalline dispersions are a unique state of matter that can be exp...
Both non-equilibrium phase transitions and equilibrium textures of interacting charged chiral rods a...
AbstractThe nature of chiral interactions among chiral biopolymers, such as DNA, protein α-helices, ...
DNA molecules form dense liquid-crystalline twisted phases both in vivo and in vitro. How the micros...
This review discusses liquid crystal phase formation by biopolymers in solution. Lyotropic mesophase...
Evidence of a special chiral nematic phase is provided using numerical simulation and Onsager theory...