DOI: 10.1515/polyeng-2026-0009 ISSN: 0334-6447

Synergistic effect of layered yttrium phenylphosphonate and aluminum diethylphosphonate in flame retarding polyamide 66

Wenqi Tang, Wayne Hsu, Shenglong Wang, Yincai Wu, Fenglong Lin, Lijun Song, Xinyu Ye

Abstract

A novel layered rare-earth flame retardant, yttrium phenylphosphonate (YPP), was synthesized via a self-assembly solution route and employed as a synergistic agent with aluminum diethylphosphinate (AlPi) to enhance the fire safety of polyamide 66 (PA66). While the incorporation of 8.5 wt% AlPi alone improved the limiting oxygen index (LOI) to 29.0 %, it failed to achieve a V-0 rating. Incorporating merely 0.5 wt% YPP into the system (S7: 8.0 wt% AlPi/0.5 wt% YPP) resulted in a substantial performance leap, achieving a UL-94 V-0 rating with no melt dripping and an LOI of 32.3 %. Relative to neat PA66, the optimized composite demonstrated a 70.2 % reduction in peak heat release rate (PHRR) and a 15.0 % decrease in total heat release (THR). Concurrently, the char yield at 800 °C increased significantly from 0.6 % to 8.3 %. Thermogravimetric analysis coupled with infrared spectroscopy and X-ray photoelectron spectroscopy revealed a dual-phase mechanism: YPP promotes the formation of a thermally stable, phosphorus-yttrium crosslinked char network in the condensed phase, while AlPi releases phosphorus radicals to quench combustion in the gas phase. These findings establish the AlPi/YPP system as a highly efficient, halogen-free flame retardant strategy for engineering plastics, offering superior fire safety at significantly reduced additive loadings.

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