Preparation and Characterization of Sulfonated Polyphenylquinoxalines

Author:

Rusanov Alexander L.1,Belomoina Nathalia M.1,Bulycheva Elena G.1,Yanul Nicolaï A.2,Likhatchev Dmitri Yu.3,Dobrovolskii Yuri A.4,Iojoiu Cristina5,Sanchez Jean-Yves6,Voytekunas Vanda Yu.7,Abadie Marc J.M.8

Affiliation:

1. A. N. Nesmeyanov Institute of Organoelement Compounds, Russian Academy of Sciences, Moscow, Russia

2. M. V. Lomonosov Institute of Fine Chemical Technology, Moscow, Russia

3. Material Research Institute, UNAM., M-UNAM, Coyocam, Mexico

4. Institute of Problems of Chemical Physics, Russian Academiy of Sciences, Chernogolovka, Russia

5. LEPMI ENSEEG, Université Joseph Fourier, Saint Martin dHères, France

6. LEPMI ENSEEG, Université Joseph Fourier, Saint Martin d'Hères, France

7. Laboratory of Polymer Science & Advanced Organic Materials - LEMP/MAO, CC 021, Université Montpellier 2, Sciences et Techniques du Languedoc, Montpellier Cedex 05 - France, SIMTech-Singapore Institute of Manufacturing Technology, 71 Nanyang Drive, Singapore 638075

8. Laboratory of Polymer Science & Advanced Organic Materials - LEMP/MAO, CC 021, Université Montpellier 2, Sciences et Techniques du Languedoc, Montpellier Cedex 05 - France, , School of Matgerials Science and Engineering, Nanyang Technological University - NTU, 50 Nanyang Avenue, Singapore 639798

Abstract

Poly(phenylquinoxaline)s.(PPQs) are a family of aromatic condensation polymers known for their outstanding thermal and chemical stability. The pendant phenyl groups and chains isomerism improve the solubility and processing characteristics of these polymers. PPQs have also been shown to possess excellent thermo-oxidative stability and thermohydrolytic stability. This stability makes these polymers candidates for development as proton exchange membranes (PEMs) to be used in fuel cells. In addition to thermohydrolytic stability, PEMs require high protonic conductivity and, in order to achieve this they also require high water uptake. Aromatic condensation polymers do not possess these properties, but ionomers derived from them may. The usual method to derivatiziting these polymers is through sulfonation. In the frames of the present investigation we have carried out sulfonation of two PPQs using an H2SO 4—oleum mixture (4 : 1) as sulfonating agent at 125 3C. As a quinoxaline ring is readily formed in acidic medium synthesis of sulfonated PPQs (SPPQs) was also carried out directly from monomers using an H 2SO4—oleum mixture as solvent, catalyst and as sulfonating agent. Depending on the conditions of the reaction (temperature, duration, and the ratio of components in a sulfonating mixture) the polymers containing 0.2—6.7% S were prepared. SPPQs are soluble in polar organic solvents1 from the solutions of SPPQs high strength films ( 3 = 80—100 MPa) were cast. On the basis of sulfonated PPQs new cation-exchange membranes were prepared and investigated. Among the cation-exchange membranes developed those of the greatest interest are proton-exchanging membranes for fuel cells. Proton conductivity of the membranes prepared strongly depends on relative humidity and comparable with the conductivity of Nafion 117.

Publisher

SAGE Publications

Subject

Materials Chemistry,Organic Chemistry,Polymers and Plastics

Reference27 articles.

1. Linear Polyquinoxalines

2. Rusanov, A.L. , Tugushi, D.S. and Korshak, V.V. (1988). Progress in Polyheteroarylenes Chemistry, Tbilissi State University, Tbilissi, 180 pp.

3. “Bistetracyclones” and “Bishexaphenylbenzenes”

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