To date, azo dyes are widely used for liquid crystal photoalignment in flat panel displays. The relation of dichroism of azo dyes with their orientation under intensive light wave field is considered. Values of a cos2φ parameter, which characterizes orientation order of both molecules and dimers, were obtained as well as energy of their orientation process. Number of cooperatively oriented dye molecules was estimated. The angles distribution functions for different dimers were derived. Dipole electrical transition moments directed on angles close to 90° to the direction of maximal polarizability of dimers were revealed. © 2018 Society for Information Displa
We studied the effective interaction of the angular momentum of light with a liquid crystal (LC) dop...
We studied the effective interaction of the angular momentum of light with a liquid crystal (LC) dop...
We studied the effective interaction of the angular momentum of light with a liquid crystal (LC) dop...
To date, azo dyes are widely used for liquid crystal photoalignment in flat panel displays. The rela...
Theoretical models developed in the MRSU group under leadership of Professor Artem Dadivanyan in are...
Theoretical models developed in the MRSU group under leadership of Professor Artem Dadivanyan in are...
A mechanism of dyes molecules orientation by laser radiation is proposed that takes into account ani...
Photoalignment on azo dye films is a simple and efficient way to achieve anisotropic ordering of mol...
Excellent photoalignment of different liquid crystals (LC) on the films of commercially available az...
Liquid crystal (LC) photo-alignment using azo-dyes is reviewed. This alignment method is very differ...
The field of LC photoalignment is very rapidly developing and a vast amount of the new materials, te...
Abstract—Liquid crystal (LC) photo-alignment using azo-dyes is reviewed. This alignment method is ve...
In this paper, the photo-induced alignment of liquid crystal on an azo dye film is discussed for the...
Liquid crystal photoalignment using commercially available azo dye CD-1 is reviewed. Proposed dye sh...
We studied the effective interaction of the angular momentum of light with a liquid crystal (LC) dop...
We studied the effective interaction of the angular momentum of light with a liquid crystal (LC) dop...
We studied the effective interaction of the angular momentum of light with a liquid crystal (LC) dop...
We studied the effective interaction of the angular momentum of light with a liquid crystal (LC) dop...
To date, azo dyes are widely used for liquid crystal photoalignment in flat panel displays. The rela...
Theoretical models developed in the MRSU group under leadership of Professor Artem Dadivanyan in are...
Theoretical models developed in the MRSU group under leadership of Professor Artem Dadivanyan in are...
A mechanism of dyes molecules orientation by laser radiation is proposed that takes into account ani...
Photoalignment on azo dye films is a simple and efficient way to achieve anisotropic ordering of mol...
Excellent photoalignment of different liquid crystals (LC) on the films of commercially available az...
Liquid crystal (LC) photo-alignment using azo-dyes is reviewed. This alignment method is very differ...
The field of LC photoalignment is very rapidly developing and a vast amount of the new materials, te...
Abstract—Liquid crystal (LC) photo-alignment using azo-dyes is reviewed. This alignment method is ve...
In this paper, the photo-induced alignment of liquid crystal on an azo dye film is discussed for the...
Liquid crystal photoalignment using commercially available azo dye CD-1 is reviewed. Proposed dye sh...
We studied the effective interaction of the angular momentum of light with a liquid crystal (LC) dop...
We studied the effective interaction of the angular momentum of light with a liquid crystal (LC) dop...
We studied the effective interaction of the angular momentum of light with a liquid crystal (LC) dop...
We studied the effective interaction of the angular momentum of light with a liquid crystal (LC) dop...