Polypropylene (PP) is one of the most widely used polymers in the automotive sector; however, its application is limited by low UV resistance, brittleness at sub-ambient temperatures, and restricted recyclability. In this context, vitrimers were synthesized from maleic anhydride-grafted polypropylene (PP-g-AM) via reactive extrusion using diglycidyl ether of bisphenol A (DGEBA) and modified cellulose (CM) as crosslinking agents, with Zn(acac)₂ serving as a transesterification catalyst. The resulting materials were systematically characterized through FTIR, TGA, DSC, DMA, XRD, and rheological analyses. Incorporation of CM enhanced thermal stability (Tmáx ≈ 449 °C) and increased crosslinking density (gel fraction up to 50%), while reducing the melt flow index, thereby confirming the formation of dynamic polymer networks. Although CM-based systems exhibited slightly lower crosslinking density than the DGEBA control, they demonstrated comparable performance, with the additional benefit of integrating a renewable resource. These results position PP-CM vitrimers as promising sustainable materials for automotive applications, offering durability, recyclability, and improved mechanical properties.
INDELPRO México
Beca SECIHTI. No. CVU: 1102115