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Characterization of Tin/Ethylene Glycol Solar Nanofluids Synthesized by Femtosecond Laser Radiation.

Rafael Torres-MendietaRosa MondragónVerónica Puerto-BeldaOmel Mendoza-YeroJesús LancisJ Enrique JuliáGladys Mínguez-Vega
Published in: Chemphyschem : a European journal of chemical physics and physical chemistry (2016)
Solar energy is available over wide geographical areas and its harnessing is becoming an essential tool to satisfy the ever-increasing demand for energy with minimal environmental impact. Solar nanofluids are a novel solar receiver concept for efficient harvesting of solar radiation based on volumetric absorption of directly irradiated nanoparticles in a heat transfer fluid. Herein, the fabrication of a solar nanofluid by pulsed laser ablation in liquids was explored. This study was conducted with the ablation of bulk tin immersed in ethylene glycol with a femtosecond laser. Laser irradiation promotes the formation of tin nanoparticles that are collected in the ethylene glycol as colloids, creating the solar nanofluid. The ability to trap incoming electromagnetic radiation, thermal conductivity, and the stability of the solar nanofluid in comparison with conventional synthesis methods is enhanced.
Keyphrases
  • radiation induced
  • risk assessment
  • machine learning
  • heat stress
  • high resolution
  • big data
  • human health