4.7 Article

Synthesis of zinc hydroxystannate/reduced graphene oxide composites using chitosan to improve poly(vinyl chloride) performance

Journal

CARBOHYDRATE POLYMERS
Volume 256, Issue -, Pages -

Publisher

ELSEVIER SCI LTD
DOI: 10.1016/j.carbpol.2020.117575

Keywords

Chitosan; Reduced graphene oxide; Flame retardant; Zinc hydroxystannate; Poly(vinyl chloride)

Funding

  1. Science and Technology Project of Hebei Education Department [ZD2018011]
  2. Beijing Tianjin Hebei collaborative innovation community construction project [20541401D]

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A novel flame retardant was synthesized by using chitosan-modified zinc hydroxystannate and reduced graphene oxide to enhance the performance of flexible poly(vinyl chloride). The results showed that this flame retardant could effectively reduce the heat release and smoke emission of PVC composites.
Chitosan-modified zinc hydroxystannate (ZHS-CS) was synthesized using the cations of the biomaterial chitosan (CS) and ion replacement strategy. A ZHS-CS and reduced graphene oxide (rGO) hybrid flame retardant (ZHS-CS/rGO) was synthesized for use in flexible poly (vinyl chloride) (PVC). Scanning electron microscopy images indicated that ZHS-CS and rGO were evenly dispersed in ZHS-CS/rGO without agglomeration. Fourier transform infrared spectroscopy results showed that rGO was fully reduced. The flame-retardant and mechanical properties of PVC composites were investigated using the limiting oxygen index (LOI), a cone calorimeter, and mechanical equipment. By replacing one-fifth of the zinc ions in ZHS by chitosan cations to obtain Sn-4Zn-1CS/rGO, the ZHS-CS/rGO was found to improve PVC composite performance. The total heat release and total smoke release of PVC/Sn-4Zn-1CS/rGO were reduced by 24.2 and 40.0 %, respectively, from those of pure PVC.

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