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Thermal degradation study of polymethylmethacrylate with AlI3 nanoadditive

Tipo de material: TextoTextoSeries ; Microscopy Research and technique, 85(4), p.1494-1501, 2022Trabajos contenidos:
  • Bahadur, A
  • Iqbal, S
  • Alsaab, H. O
  • Awwad, N. S
  • Ibrahium, H. A
Tema(s): Recursos en línea: Resumen: Organic polymers in the process of thermal degradation produce a lot of toxic fragments. In this work, we designed a new method of degradation of polymethylmethacrylate (PMMA)materials with aluminum triiodide nanoadditives (AlI3 NAs). In the present research work, a thermal degradation study of PMMA blends with AlI3 NAs was carried out by using a specially designed pyrolytic assembly. Different blends of PMMA with AlI3 (P0, P3, P6, P9, P12, and P15)were prepared by changing the concentration of AlI3 NAs from 0 percent to 15 percent. FTIR and TGA studies show the stability of polymers with AlI3 NAs. Scanning electron microscopy analysis shows All3 spread uniformly at nanoscale throughout the polymer matrix. Horizontal burning test (HBT)test confirms that polymer burning is retarded with AlI3 NAs.
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Organic polymers in the process of thermal degradation produce a lot of toxic fragments. In this work, we designed a new method of degradation of polymethylmethacrylate (PMMA)materials with aluminum triiodide nanoadditives (AlI3 NAs). In the present research work, a thermal degradation study of PMMA blends with AlI3 NAs was carried out by using a specially designed pyrolytic assembly. Different blends of PMMA with AlI3 (P0, P3, P6, P9, P12, and P15)were prepared by changing the concentration of AlI3 NAs from 0 percent to 15 percent. FTIR and TGA studies show the stability of polymers with AlI3 NAs. Scanning electron microscopy analysis shows All3 spread uniformly at nanoscale throughout the polymer matrix. Horizontal burning test (HBT)test confirms that polymer burning is retarded with AlI3 NAs.

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