All-Thiophene-Based Double Helix: Synthesis, Crystal Structure, Chiroptical Property and Arylation
Author(s) -
Bingbing Li,
Sheng Zhang,
Lu Li,
Zhiying Ma,
Chunli Li,
Li Xu,
Hua Wang
Publication year - 2018
Publication title -
acs omega
Language(s) - English
Resource type - Journals
SCImago Journal Rank - 0.779
H-Index - 40
ISSN - 2470-1343
DOI - 10.1021/acsomega.8b02492
Subject(s) - negishi coupling , thiophene , circular dichroism , conjugated system , optical rotation , helix (gastropod) , fluorescence , crystallography , chemistry , crystal structure , materials science , photochemistry , stereochemistry , organic chemistry , catalysis , polymer , optics , ecology , physics , snail , biology
The all-thiophene-based double helix DH-1 was designed and prepared originally from the selective deprotonation of cyclooctatetrathiophene (tetra[3,4]thienylene, COTh ) and following the Negishi coupling reaction with 3,3'-bithiophene. The X-ray crystallographic studies revealed that DH-1 has a double-helical scaffold. The arylations including tetraphenylation and tetrathienylation were efficiently employed to replace the four α-protons of the central COTh of DH-1 with phenyl and thiophenyl groups via cross-coupling reactions. The chiral resolution of rac - DH-1 was fulfilled via chiral high-performance liquid chromatography, and the chiroptical properties were characterized by circular dichroism spectra and optical rotation. Ultraviolet-visible absorption and fluorescence behaviors of DH-1 and its arylation products were also characterized to describe the extended conjugated scaffold.
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