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Authors

Zaina Algarni

Last known institution:
University of Bisha
ORCID:
0000-0003-2639-2287
5
h-index
2
i10-index
76
Citations
12
Works
Trends over time

Performance over time

Citation overview

Publications (bars) and citations (line) by year

  • Publications
  • Citations
03581002550751002024202520262024: Publications 6, Citations 52025: Publications 6, Citations 622026: Publications 0, Citations 9

Citation history

02550751002024202520262024: Citations 52025: Citations 622026: Citations 9

Publication history

0358102024202520262024: Publications 62025: Publications 62026: Publications 0

h-index evolution

Cumulative h-index by year

013452024202520262024: h-index 12025: h-index 52026: h-index 5

Most-cited works

  1. Charge separation by switching heterojunction system from Type-II to S-scheme for enhanced photocatalytic activity: Environmental detoxification and H2 production202427 citations
  2. Utilizing RSM-CCD for optimizing the removal of Cr(VI) and tetracycline over a new recyclable Fe3O4/SiO2/ZIF-67 composite: Isotherms, kinetics, and mechanism202410 citations
  3. Construction of a novel Fe₂O₃-loaded g-C₃N₄ electrodes for high-energy and sustainable asymmetric hybrid supercapacitors20256 citations
  4. Photocatalytic hydrogen production and sulfamerazine degradation via a novel dual S-scheme photocatalyst: Nanocomposite synthesis, characterization and mechanism insights20245 citations
  5. A multi-heat recovery approach integrated with LNG regasification in a geothermal-driven multigeneration system: Techno-economic insights and machine learning-based optimization20252 citations
  6. Sustainable synthesis of a novel α‑Fe₂O₃/ZIF‑8/PANI composite electrodes for high-energy hybrid supercapacitors20252 citations
  7. Dual-functional biomass-derived carbon-supported CoTiO3-ZnO heterojunction for photocatalytic degradation of antibiotic pollutants and H2 production: Analytical characterization and toxicity evaluation20252 citations
  8. Optimization of the photocatalytic wastewater treatment process via a response surface methodology-central composite design strategy and CO₂ reduction using a novel Cs₃Bi₂I₉/Ag₃PO₄ composite under visible light20250 citations