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Effects of sacrificial coordination bonds on the mechanical performance of lignin-based thermoplastic elastomer composites

Huang, Jinhao; Liu, Weifeng*; Qiu, Xueqing*; Tu, Zhikai; Li, Jinxing; Lou, Hongming
Science Citation Index Expanded
广东工业大学

摘要

In this work, the coordination-based energy sacrificial bonds have been constructed in the interphase between lignin and polyolefin elastomer to prepare high performance lignin-based thermoplastic elastomers (TPEs). The strength and toughness of lignin-based TPEs can be adjusted by choosing different nitrogen heterocyclic compounds as reactive assistants and Fe3+ or Zr2+ as metal coordination centers. It was demonstrated that 3-Amino-1,2,4-triazole with three nitrogen atoms in the heterocydic ring and one nitrogen branch chain could form the most efficient coordination bond system and generate the best mechanical performance. The system with ferric iron as coordination center exhibited better enhancement effect than divalent zinc. By adjusting the nitrogen-containing reactive additives or metal salts as coordination centers, the mechanical performance of the lignin-based TPE can be regulated, which provides a method for making green bio-composites with good strength and toughness, and also promotes the high value utilization of lignin in polymer materials.

关键词

Lignin Thermoplastic elastomer Polyolefin Coordination bonds