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New Trends of Photocatalysis in Energy and Environmental Applications
Submission Deadline: Feb. 25, 2020

This special issue currently is open for paper submission and guest editor application.

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Lead Guest Editor
Hossam Eldin El Nazer
National research Centre in Egypt, Giza, Egypt
Guest Editor
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Guidelines for Submission
Manuscripts can be submitted until the expiry of the deadline. Submissions must be previously unpublished and may not be under consideration elsewhere.
Papers should be formatted according to the guidelines for authors (see: http://www.sciencepublishinggroup.com/journal/guideforauthors?journalid=206). By submitting your manuscripts to the special issue, you are acknowledging that you accept the rules established for publication of manuscripts, including agreement to pay the Article Processing Charges for the manuscripts. Manuscripts should be submitted electronically through the online manuscript submission system at http://www.sciencepublishinggroup.com/login. All papers will be peer-reviewed. Accepted papers will be published continuously in the journal and will be listed together on the special issue website.
Published Papers
The special issue currently is open for paper submission. Potential authors are humbly requested to submit an electronic copy of their complete manuscript by clicking here.

Special Issue Flyer (PDF)

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Special Issue

Introduction
This Special Issue welcomes both review and original research articles on all aspects of heterogeneous and homogeneous photocatalysis with an emphasis on fundamental and applied research on photocatalytic reactions. Photocatalysis based on semiconducting photoactive materials has grown tremendously in the last two decades. Photocatalyis by semiconductors photocatalysts could convert water into oxygen and hydrogen or organics to CO2 and water. Excitation by UV/Visible lights generate electron–hole pairs that could reach the surface of the semiconductor nanoparticles resulting in chemical oxidation or reduction reactions. Several materials have been produced, characterized and tested. The main aim is to produce photocatalysts with absorption in the visible range and systems that reduce electron–hole recombination. The rational design of new classes of photocatalytic materials requires a deep understanding of the basic physical principles of photocatalysis. The present special issue provides a survey of some of the most interesting techniques and methodological advances in the characterization of the basic processes of photocatalysis.

Aims and Scope:

  1. Treatment and disinfection of water and wastewater
  2. treatment air pollutants using photocatalytic techniques;
  3. Photochemistry and photocatalysis;
  4. advanced materials for photochemical and photocatalytic applications
  5. New perspectives in environmental photochatalysis
  6. Semi-pilot and pilot solar photocatalytic systems;
  7. Process fundamentals and principles;
  8. Photocatalytic hybrid systems;
  9. H2 production and CO2 reduction using Photocatalytic systems
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