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Polycondensation of Tetrahydrofuran with Phthalic Anhydride Induced By a Proton Exchanged Montmorillonite Clay

Laboratoire de Chimie des Polymères, Département de Chimie, Faculté des Sciences, Université d’Oran Es-Sènia BP N° 1524 El M’Naouar, 31000, Oran, Algeria
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Int. J. Mol. Sci. 2003, 4(6), 312-325; https://0-doi-org.brum.beds.ac.uk/10.3390/i4060312
Received: 1 February 2003 / Accepted: 5 March 2003 / Published: 31 May 2003
“Maghnite” a montmorillonite sheet silicate clay, exchanged with protons to produce “H-Maghnite” is an efficient catalyst for polymerization of many vinylic and heterocyclic monomers (Belbachir, M. U.S. Patent. 066969.0101 –2001). The structure compositions of both “Maghnite” and “H-Maghnite” have been developed. This catalyst was used for the polycondensation of the tetrahydrofuran with phthalic anhydride. The polymerization was performed under suitable conditions at temperature (40°C), in presence of acetic anhydride. Experiments revealed that polymerization induced by “H-Maghnite”, proceed in bulk and the conversion increases with increasing “H-Maghnite” proportion. View Full-Text
Keywords: Anhydride; Maghnite; Montmorillonite; Phthalic; Tetrahydrofuran Anhydride; Maghnite; Montmorillonite; Phthalic; Tetrahydrofuran
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MDPI and ACS Style

Ferrahi, M.I.; Belbachir, M. Polycondensation of Tetrahydrofuran with Phthalic Anhydride Induced By a Proton Exchanged Montmorillonite Clay. Int. J. Mol. Sci. 2003, 4, 312-325. https://0-doi-org.brum.beds.ac.uk/10.3390/i4060312

AMA Style

Ferrahi MI, Belbachir M. Polycondensation of Tetrahydrofuran with Phthalic Anhydride Induced By a Proton Exchanged Montmorillonite Clay. International Journal of Molecular Sciences. 2003; 4(6):312-325. https://0-doi-org.brum.beds.ac.uk/10.3390/i4060312

Chicago/Turabian Style

Ferrahi, Mohammed I., and Mohammed Belbachir. 2003. "Polycondensation of Tetrahydrofuran with Phthalic Anhydride Induced By a Proton Exchanged Montmorillonite Clay" International Journal of Molecular Sciences 4, no. 6: 312-325. https://0-doi-org.brum.beds.ac.uk/10.3390/i4060312

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