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Metal Complexes of the Porphyrin-Functionalized Polybenzoxazine. | LitMetric

Metal Complexes of the Porphyrin-Functionalized Polybenzoxazine.

Polymers (Basel)

Department of Chemical Engineering, National Taiwan University, No. 1, Sec. 4, Roosevelt Road, Taipei 10617, Taiwan.

Published: January 2022

AI Article Synopsis

  • A new porphyrin-functionalized benzoxazine (Por-BZ) was successfully synthesized with high purity and yield through a reaction involving tetrakis(4-aminophenyl)porphyrin and salicylaldehyde.
  • The thermal properties of the resulting product were analyzed, revealing that its ring-opening polymerization requires a higher temperature (314 °C) compared to typical benzoxazine monomers, with the poly(Por-BZ) showing a high thermal decomposition temperature of 478 °C.
  • The addition of metal ions like Ni and Zn lowered the polymerization temperatures of the Por-BZ complexes and enhanced thermal stability after polymerization, demonstrating the effectiveness of these metals as promoters in the process.

Article Abstract

New porphyrin-functionalized benzoxazine (Por-BZ) in high purity and yield was synthesized in this study based on H and C NMR and FTIR spectroscopic analyses through the reduction of Schiff base formed from tetrakis(4-aminophenyl)porphyrin (TAPP) and salicylaldehyde and the subsequent reaction with CHO. Thermal properties of the product formed through ring-opening polymerization (ROP) of Por-BZ were measured using DSC, TGA and FTIR spectroscopy. Because of the rigid structure of the porphyrin moiety appended to the benzoxazine unit, the temperature required for ROP (314 °C) was higher than the typical Pa-type benzoxazine monomer (ca. 260 °C); furthermore, poly(Por-BZ) possessed a high thermal decomposition temperature ( = 478 °C) and char yield (66 wt%) after thermal polymerization at 240 °C. An investigation of the thermal and luminescence properties of metal-porphyrin complexes revealed that the insertion of Ni and Zn ions decreased the thermal ROP temperatures of the Por-BZ/Ni and Por-BZ/Zn complexes significantly, to 241 and 231 °C, respectively. The metal ions acted as the effective promoter and catalyst for the thermal polymerization of the Por-BZ monomer, and also improved the thermal stabilities after thermal polymerization.

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Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC8839356PMC
http://dx.doi.org/10.3390/polym14030449DOI Listing

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