Advanced search
Start date
Betweenand


Study of vibrational spectra of substituted polyacetylenes

Full text
Author(s):
Ricardo Prado Millen
Total Authors: 1
Document type: Doctoral Thesis
Press: São Paulo.
Institution: Universidade de São Paulo (USP). Conjunto das Químicas (IQ e FCF) (CQ/DBDCQ)
Defense date:
Examining board members:
Marcia Laudelina Arruda Temperini; Elizabeth Pinheiro Gomes Areas; Marilia Junqueira Caldas; Carlos José Leopoldo Constantino; Susana Ines Cordoba de Torresi
Advisor: Marcia Laudelina Arruda Temperini
Abstract

In this work poly-2-ethynylpyridine (P2EP), poly-4-ethynylpyridine (P2EP), poly(2-N-t-butylpyridiniumylacetylene) iodide (P2EPtBu) and poly-β-pethynylnaphthalene (PβEN) were synthesized. These polymers, which are polyacetylenes derivatives, and poly(2-pyridinium-2-pyridylacetylene) chloride (P2EPH) were analyzed by vibrational techniques. It was observed that some Raman band positions shifted when excitation energy was changed, however this shift (ca. 10 cm-1) was substantially smaller than the presented by polyacetylene (ca. 60 cm-1). This phenomenon called Raman dispersion or photoselectivity - was examinated using Amplitude Mode Model (AMM) and Effective Conjugation Coordinate Model (ECCM) and gave us important information about polymer structure and its electronic energies levels. Using AMM it was possible to infere information about electronic excited states with the same symmetry of the electronic ground state. ECCM gave us evidences about differences in conjugation extension and dimerization degree between cis and trans structures. Besides this, ECCM was successful in indicating cis structure to P2EP. Infrared spectrum confirmed that this polymer is mainly cis. I2 doping of P2EP, P2EPH and P2EPtBu provoked differents perturbations in these systems. P2EP and P2EPH increased their cis segments amount, as showed by infrared spectra. On the other hand, this doping induced the decrease of cis segments in P2EPtBu. Raman spectroscopy supported these conclusions too. This difference was interpretated as due to the side group volume, which could favour one or another isomerization. Electronic conductivity increased by doping for all these three polymers, however the conductivity is considerably lower than the presented by polyacetylene (from 10-5 to 10-7 S cm-1 for these substituted polyacetylenes against typically 10-2 S cm-1 for polyacetylene). (AU)