Abstract
In situ anionic homo- and copolymerization of caprolactam (CL) and laurolactam (LL) with sodium montmorillonite clay (NaMMT) was carried out using two different initiators, sodium caprolactamate (CLNa) and caprolactam magnesium bromide (CLMgBr). Degree of conversion and final molecular weight were used to assess the advancement and efficiency of the polymerization reaction and X-ray diffraction and electron microscopy were used to evaluate the sodium montmorillonite clay intercalation/exfoliation. The use of CLNa as initiator produced a higher conversion degree and molecular weight than the use of CLMgBr. Through DSC, it was observed that CLNa and CLMgBr tended to produce random and block copolymer structures, respectively, and either random or block, this eventually has an effect on the clay dispersion within the polymer matrix. In all cases, increasing the LL content produced a decrease in the conversion degree and in the molecular weight of the resulting polymer. © 2012 E. N. Cabrera Álvarez et al.
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CITATION STYLE
Cabrera Álvarez, E. N., Ramos De Valle, L. F., Rodríguez González, F. J., Soriano-Corral, F., & Díaz De León, R. E. (2012). Influence of laurolactam content on the clay intercalation of polyamide 6,12/clay nanocomposites synthesized by open ring anionic polymerization. Journal of Nanomaterials, 2012. https://doi.org/10.1155/2012/487948
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