Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conventional uniaxial nematic phase as confirmed by x-ray diffraction. The phase produces unusual periodic stripe domains in planar cells. The stripes are found to be parallel to the rubbing direction (in rubbed cells) with a well-defined period equal to double the cell gap. The stripes appear without external electromagnetic field, temperature or thickness gradients, rubbing or hybrid alignment treatments. Simple modeling proposes a negative sign for at least one of the two elastic constants: splay and twist, as a necessary condition for the observed pattern
Photopolymerization of a reactive mesogen mixed with a mesogenic dimer, shown to exhibit the twist-b...
Photopolymerization of a reactive mesogen mixed with a mesogenic dimer, shown to exhibit the twist-b...
The twist-bend nematic phase (NTB) exhibits a complicated hierarchy of structures responsible for se...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Different liquid crystalline phases with long-range orientational but not positional order, so-calle...
Photopolymerization of a reactive mesogen mixed with a mesogenic dimer, shown to exhibit the twist-b...
Photopolymerization of a reactive mesogen mixed with a mesogenic dimer, shown to exhibit the twist-b...
Photopolymerization of a reactive mesogen mixed with a mesogenic dimer, shown to exhibit the twist-b...
The twist-bend nematic phase (NTB) exhibits a complicated hierarchy of structures responsible for se...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Hydrocarbon linked mesogenic dimers are found to exhibit an additional nematic phase below the conve...
Different liquid crystalline phases with long-range orientational but not positional order, so-calle...
Photopolymerization of a reactive mesogen mixed with a mesogenic dimer, shown to exhibit the twist-b...
Photopolymerization of a reactive mesogen mixed with a mesogenic dimer, shown to exhibit the twist-b...
Photopolymerization of a reactive mesogen mixed with a mesogenic dimer, shown to exhibit the twist-b...
The twist-bend nematic phase (NTB) exhibits a complicated hierarchy of structures responsible for se...