What is it about?
The paper titled "Effect of Laser Parameters on Laser-Induced Graphene Filter Fabrication and Its Performance for Desalination and Water Purification" describes a study that demonstrated the fabrication, optimization, and characterization of laser-induced graphene (LIG) with different laser parameters such as power, speed, image density (ID), focusing, laser platforms, and membrane support layer effect on porous PES commercial (UP010) and lab-casted 15% PES (PES15) membranes. The authors report that their optimized LIG was tested for interfacial joule heating and solar-driven evaporation for desalination and water purification.
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Why is it important?
The paper titled "Effect of Laser Parameters on Laser-Induced Graphene Filter Fabrication and Its Performance for Desalination and Water Purification" describes a study that demonstrated the fabrication, optimization, and characterization of laser-induced graphene (LIG) with different laser parameters such as power, speed, image density (ID), focusing, laser platforms, and membrane support layer effect on porous PES commercial (UP010) and lab-casted 15% PES (PES15) membranes. The authors report that their optimized LIG was tested for interfacial joule heating and solar-driven evaporation for desalination and water purification.
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This page is a summary of: Effect of Laser Parameters on Laser-Induced Graphene Filter Fabrication and Its Performance for Desalination and Water Purification, ACS Applied Materials & Interfaces, February 2023, American Chemical Society (ACS),
DOI: 10.1021/acsami.2c17106.
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