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  4. Synthesis, photophysical, and electrochromic characterization of wholly aromatic polyamide blue-light-emitting materials
 
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Synthesis, photophysical, and electrochromic characterization of wholly aromatic polyamide blue-light-emitting materials

Journal
Macromolecules
Journal Volume
39
Journal Issue
16
Pages
5337-5346
Date Issued
2006
Author(s)
GUEY-SHENG LIOU  
Hsiao, S.-H.
Huang, N.-K.
Yang, Y.-L.
DOI
10.1021/ma0608469
URI
http://www.scopus.com/inward/record.url?eid=2-s2.0-33748328438&partnerID=MN8TOARS
http://scholars.lib.ntu.edu.tw/handle/123456789/321311
Abstract
A new carbazole-derived triphenylamine-containing aromatic dicarboxylic acid monomer, 4,4′-dicarboxy-4″-N-carbazolyltriphenylamine, with blue light (460 nm) fluorescence quantum yield of 40% was successfully synthesized by the cesium-fluoride-mediated condensation of N-(4-aminophenyl)carbazole with 4-fluorobenzonitrile, followed by alkaline hydrolysis of the dinitrile intermediate. A series of novel poly(amine-amide)s with pendent N-phenylcarbazole units having inherent viscosities of 0.36-0.61 dL/g were prepared from the newly synthesized dicarboxylic acid monomer and various aromatic diamines by direct phosphorylation polycondensation. The obtained polymers were amorphous and could afford flexible, transparent, and tough films with good mechanical properties. They had useful levels of thermal stability associated with relatively high glass-transition temperatures (269-322°C). These polymers exhibited strong UV-vis absorption maxima at 340-361 nm, and their photoluminescence showed emission peaks around 449-465 nm with quantum yields up to 46% in NMP solution. The hole-transporting and electrochromic properties were examined by electrochemical and spectroelectrochemical methods. Cyclic voltammograms of the poly(amine-amide) films prepared by casting polymer solution onto an indium-tin oxide (ITO) -coated glass substrate exhibited one reversible oxidative redox couples at potentials of 1.11-1.18 V vs Ag/AgCl in acetonitrile solution due to oxidation of main-chain triphenylamine unit. The polymer films revealed excellent stability of electrochromic characteristics for the radical cations generated, changing color from original yellowish to deep blue. © 2006 American Chemical Society.
Type
journal article

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