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◆ ACS Applied Polymer Materials2026-03-13· Limiting oxygen index

Synthesis of Polyamide 66 Copolymers with Inherent Flame Retardancy and Enhanced Mechanical Properties

Yanlu Sun, Zhihao Chen, Yufan Bai, Xun Zhang, Ke Liu, Ruyi Li, Wenxing Chen, Wangyang Lü

原始摘要(英文原文)· Original abstract
Flame-retardant modification of polyamide 66 (PA66) typically leads to a reduction in mechanical properties, as the steric hindrance effect of flame retardants weakens the intermolecular forces and affects the crystallization behavior, thereby limiting its broader applications. In this work, a reactive flame retardant (TAP), composed of 9,10-dihydro-9-oxa-10-phosphaphenanthrene-10-oxide (DOPO) and triazole structures, was synthesized and employed to fabricate inherently flame-retardant PA66 copolymers via a straightforward synthetic route. Incorporation of 4 wt % TAP into PA66 (denoted as PA66- co -TAP-4) endowed the copolymer with a limiting oxygen index (LOI) of 30.2% and a V-0 rating in the vertical burning (UL94) test. Compared with pure PA66 (80.9 MPa), PA66- co -TAP-4 achieved a higher tensile strength of 85.6 MPa. Synergistic effects of gas-phase radical quenching, fuel dilution, condensed-phase barrier action, and TAP-copolymer hydrogen-bonding interactions render PA66- co -TAPs with superior flame resistance and improved mechanical performance. This work provides a viable strategy to enhance the fire safety of PA66, thereby, significantly expanding its practical application value.
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