posted on 2024-09-17, 15:37authored byIhor M. Tkachenko, Yuriy I. Kurioz, Ruslan M. Kravchuk, Yaroslav L. Kobzar, Dmytro V. Litoshenko, Anatoliy V. Glushchenko, Valery V. Shevchenko, Vassili G. Nazarenko
In this paper, we give an overview of novel main-chain
azobenzene-based
fluorinated poly(arylene ether)s with different content of azo groups,
aiming at providing a better understanding of the link between a number
of NN bonds and the macroscopic response of the material.
We discuss chemical synthesis and molecular structure and report on
a comprehensive analysis of the polymer properties, thermal behavior,
and mechanical strength. We show that a higher content of azobenzene
moieties reduces the mechanical strength of the polymer materials.
On the other hand, polymers with a higher content of azobenzene demonstrate
higher values of induced birefringence due to a larger number of azobenzene
in the trans form. The photoisomerization constants
of all polymers fall within a very close range. The minor variations
are attributed to the number of azobenzene groups in the polymer composition
and the conformational arrangements of the polymer chain packing.
The developed light-sensitive polymers were employed for dynamic control
and manipulation of the liquid crystal orientation by polarization
of the incident light. After the double irradiation of the substrates
using appropriate photomasks, we made patterned cells that consist
of domains with different high-resolution liquid crystal director
orientations.