SYNTHESIS AND PHYSICAL-PROPERTIES OF REGIOCHEMICALLY WELL-DEFINED, HEAD-TO-TAIL COUPLED POLY(3-ALKYLTHIOPHENES)

Citation
Rd. Mccullough et al., SYNTHESIS AND PHYSICAL-PROPERTIES OF REGIOCHEMICALLY WELL-DEFINED, HEAD-TO-TAIL COUPLED POLY(3-ALKYLTHIOPHENES), Synthetic metals, 55(2-3), 1993, pp. 1198-1203
Citations number
19
Categorie Soggetti
Physics, Condensed Matter","Metallurgy & Mining
Journal title
ISSN journal
03796779
Volume
55
Issue
2-3
Year of publication
1993
Pages
1198 - 1203
Database
ISI
SICI code
0379-6779(1993)55:2-3<1198:SAPORW>2.0.ZU;2-K
Abstract
We have recently developed a regiospecific synthetic method that produ ces poly(3-alkylthiophenes) (PAT's) that, for the first time, contain almost exclusively head-to-tail (HT) couplings [1]. Details on the syn thesis, NMR characterization of structural regularity, UV-VIS data on solutions and thin films, and preliminary X-ray, electrical conductivi ty, and thermal data are presented herein. NMR spectral characterizati on reveals >93% head-to-tail-head-to-tail (HT-HT) couplings in poly(3- butylthiophene) (PBT), poly(3-hexylthiophene) (PHT), poly(3-octylthiop hene) (POT), and poly(3-dodecylthiophene) (PDDT). In the UV-VIS, these PAT's show lower energy absorption maximum shifts of up to 14 nm in s olution, 46 nm in the solid state, and other intense lower energy peak s with shifts of up to 129 nm (609 nm) from PAT's prepared by the usua l methods. X-ray analysis of unoriented (as cast) thin films of PHT on glass indicate a much more ordered structure than PHT made from FeCl3 . It also appears that our unoriented PHT is at least as ordered as st retch oriented PHT. Preliminary maximum room temperature electrical co nductivity values for PAT's (doped with I2) are 1000 S cm-1 for PDDT, 200 S cm-1 for POT, and 60 S cm-1 for PHT. Thermal analysis of POT pre pared by this method is also presented and these samples are found to be highly crystalline.