LAUSR.org creates dashboard-style pages of related content for over 1.5 million academic articles. Sign Up to like articles & get recommendations!

Orientational effects of h-bonding in the chirality transfer from (2R,3R)‑(−)‑2,3-butandiol to polar nematic liquid crystal

Photo by tasha0809 from unsplash

Abstract The dielectric and orientational properties of solutions of chiral (2R, 3R) - (−) 2,3‑butanediol and its racemic mixture in a liquid-crystalline mixture of alkoxycyanobiphenyls (CB6) were studied. The introduction… Click to show full abstract

Abstract The dielectric and orientational properties of solutions of chiral (2R, 3R) - (−) 2,3‑butanediol and its racemic mixture in a liquid-crystalline mixture of alkoxycyanobiphenyls (CB6) were studied. The introduction of the chiral diol leads to the formation of a spiral nematic mesophase with the formation of a “fingerprints” texture. The introduction of dopants was shown to be accompanied by a decrease in the dielectric anisotropy of the mesophase. (2R, 3R) - (−) 2,3‑butanediol provides the most noticeable decrease as a result of chiral phase induction. From the NMR spectroscopy data, an increase in the ordering of the nematic phase during modification was observed. On the base of Kirkwood's correlation parameter analysis a change in associative state of the mesophase concerned with the formation of H-complexes alkoxycyanobiphenyl-butanediol was shown. By the of quantum chemical calculations, optimized structures of 1: 1 and 2:1 supermolecules were obtained, their dipole moments and 13C NMR spectra were calculated. By comparing these data with experimental spectra, a conclusion was made about the predominance of trimolecular complexes with hydrogen bond.

Keywords: chirality transfer; transfer butandiol; effects bonding; orientational effects; butandiol polar; bonding chirality

Journal Title: Journal of Molecular Liquids
Year Published: 2019

Link to full text (if available)


Share on Social Media:                               Sign Up to like & get
recommendations!

Related content

More Information              News              Social Media              Video              Recommended



                Click one of the above tabs to view related content.