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Enhancing catalytic potential of gold nanoparticles by linear and cross-linked polyurethane blending.

Amna MurtazaMaliha UroosMisbah SultanRabia MuazzamSadia Naz
Published in: RSC advances (2021)
This work describes the synthesis of gold nanoparticles (AuNPs) and their subsequent stabilization using a water-borne polyurethane matrix of micro-particles (Au/PU) by a heating method. Composites were prepared both from linear and cross-linked polyurethane (LPU and CPU). Catalytic activities of synthesized composites exhibiting 226.4 nm size were evaluated for reduction of Congo red dye. More than 90% Congo red degradation was achieved in just 6 minutes with Au/LPU. Under similar conditions, 30% of dye was degraded with Au/CPU composite in 5 minutes. The effects of different variables such as concentration of dye, catalyst dose and concentration of reagents have been optimized. The degradation process followed first order kinetics. The most efficient composite (Au/LPU) was characterized using UV/Vis, FTIR, SEM, XRD and DLS techniques. The excellent catalytic activity can be attributed to the polyurethane matrix making the dye available to catalytic sites (AuNPs).
Keyphrases
  • reduced graphene oxide
  • gold nanoparticles
  • visible light
  • aqueous solution
  • highly efficient
  • tissue engineering
  • sensitive detection
  • crystal structure
  • photodynamic therapy
  • light emitting