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  • Design and fabrication of advanced microfluidic channels for biomedical applications, incorporating techniques like dielectrophoresis, acoustophoresis, and magnetophoresis for cell manipulation and characterization, synthesis of nanoparticles, and the generation and manipulation of oil-in-water and water-in-oil droplets.
  • Microfabrication of 2D material-based devices, such as graphene oxide and reduced graphene oxide, for biomedical, humidity, and gas sensing applications, and for tuning substrate wettability.
  • Application of nanofluids and phase change materials (PCMs) for thermal management in energy storage and electronics cooling.

 

Current Lab View
Current Lab View
Current Lab View
Current Lab View