Issue 43, 2016, Issue in Progress

Influence of a hydrodynamic environment on chain rigidity, liquid crystallinity, absorptivity, and photoluminescence of hydrogen-bonding-assisted helical poly(phenylacetylene)

Abstract

The chain rigidity, liquid crystallinity, absorptivity, and photoluminescence of a helical poly(phenylacetylene) derivative varied significantly depending on the solvent employed, owing to the conformational changes caused by the formation or destruction of intramolecular hydrogen bonds. The polymer chains were rigid and liquid crystalline when dissolved in such non-solvents as toluene and THF to show lower absorptivity and intramolecular excimer emission while the same polymer chains became flexible in piperidine having a high hydrogen-bonding acceptor strength to exhibit strong absorption in the visible region and the emission was significantly quenched.

Graphical abstract: Influence of a hydrodynamic environment on chain rigidity, liquid crystallinity, absorptivity, and photoluminescence of hydrogen-bonding-assisted helical poly(phenylacetylene)

Supplementary files

Article information

Article type
Paper
Submitted
22 Jan 2016
Accepted
06 Apr 2016
First published
07 Apr 2016

RSC Adv., 2016,6, 36661-36666

Influence of a hydrodynamic environment on chain rigidity, liquid crystallinity, absorptivity, and photoluminescence of hydrogen-bonding-assisted helical poly(phenylacetylene)

Y. Jin, H. Kim, M. Miyata, G. Yin, T. Kaneko, M. Teraguchi, T. Aoki and G. Kwak, RSC Adv., 2016, 6, 36661 DOI: 10.1039/C6RA01940D

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