4.7 Article

Hypophosphite/Graphitic Carbon Nitride Hybrids: Preparation and Flame-Retardant Application in Thermoplastic Polyurethane

Journal

NANOMATERIALS
Volume 7, Issue 9, Pages -

Publisher

MDPI
DOI: 10.3390/nano7090259

Keywords

graphitic carbon nitride; inorganic compounds; flame retardancy; smoke suppression; mechanisms

Funding

  1. Opening Project of State Key Laboratory of Fire Science of University of Science and Technology of China [HZ2017-KF02]
  2. Opening Research Fund of State Key Laboratory of Coal Mine Safety Technology [SKLCMST101]
  3. National Key Research and Development Program of China [2016YFE0113440]
  4. Opening Testing Funds for the Valuable Equipments of Fuzhou University [2017T015]

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A series of aluminum hypophosphite (AHPi)/graphite- like carbon nitride (g- C3N4) (designated as CAHPi) hybrids were prepared, followed by incorporation into thermoplastic polyurethane (TPU). The introduction of CAHPi hybrids into TPU led to a marked reduction in the peak of the heat release rate (pHRR), total heat release, weight loss rate, smoke production rate and total smoke production (TSP). For instance, pHRR and TSP decreased by 40% and 50% for TPU/CAHPi(20). Furthermore, the increasing fire growth index and decreasing fire performance index were obtained for TPU/CAHPi systems, suggesting reduced fire hazards. It was found that improved fire safety of TPU nanocomposites was contributed by condensed phase and gas phase mechanisms. On one hand, g- C3N4 accelerated the thermal decomposition of AHPi for the formation of more char layers. On the other hand, g- C3N4 induced AHPi to generate more free radical capture agents when exposed to flame, besides protecting AHPi against thermal oxidation.

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