<p>DMA-CuV aminophosphate (x-CVP) nanocatalysts, wastewater with low-levels of Methylene blue (MB) or Brilliant green (BG) dye pollutants was treated prior to discharge. In the present work, x-CVP/rGO nanocomposite materials were synthesized by hydrothermal method. The x-CVP/rGO nanomaterial properties were conveniently characterized using FTIR, XPS, DRS, FESEM and Mott-Schottky techniques for optical, morphological and structural purposes respectively. In addition, the engineered nanomaterial was tested on A549 lung cancer cell line whereas cell viability assay results illustrate different doses. Which is substantially dosage used in its toxicity trials and provide for present biological activities and cell viability been reasonably fixed up that to the 62.5%. These are versatile materials that can be used in the future applications without any hassle.</p>

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Rational Synthesis of x-CVP/rGO Nanomaterials for Dual Applications in Photocatalytic Degradation and Lung Cancer Therapy

  • G. Gnanamoorthy,
  • S. Magesh,
  • S. Munusamy

摘要

DMA-CuV aminophosphate (x-CVP) nanocatalysts, wastewater with low-levels of Methylene blue (MB) or Brilliant green (BG) dye pollutants was treated prior to discharge. In the present work, x-CVP/rGO nanocomposite materials were synthesized by hydrothermal method. The x-CVP/rGO nanomaterial properties were conveniently characterized using FTIR, XPS, DRS, FESEM and Mott-Schottky techniques for optical, morphological and structural purposes respectively. In addition, the engineered nanomaterial was tested on A549 lung cancer cell line whereas cell viability assay results illustrate different doses. Which is substantially dosage used in its toxicity trials and provide for present biological activities and cell viability been reasonably fixed up that to the 62.5%. These are versatile materials that can be used in the future applications without any hassle.