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Majallah-i Pizishkƒ´-i Ur≈´miyyah : Impact Factor & More

eISSN: 2008-4153pISSN: 1027-3727
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Majallah-i Pizishkƒ´-i Ur≈´miyyah Journal Specifications

Overview
Publisher Urmia University Medical Sciences
Language Persian
Publication Time15
Editorial Review ProcessAnonymous peer review
General Details
LanguagePersian
Website URLVisit website
Publication Details
Other chargesVisit website
Publication Time 15
Editorial Review Detail
Editorial TeamVisit website
Review ProcessAnonymous peer review
Review UrlVisit website
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Author instructionsVisit website
License typeCC BY-NC
OA statementVisit website
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Recently Published Papers in Majallah-i Pizishkƒ´-i Ur≈´miyyah

Electronic structure engineering of phosphorene through transition metal functionalization for toxic gas detection.
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New hybrid compound (C6H10N2)(H2PO4)2: insights into its structural, optical, and electrical behavior for electronic applications.
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Mechanistic and signal engineering of nitrogen-doped MXene quantum dots in electrochemical and electrochemiluminescence sensing platforms.
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Synergetic design of a sulfonated polyimide matrix anchored with phosphotungstic acid-loaded MOFs for enhanced fuel cell efficiency.
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High-performance CeO2/rGO hybrid nanostructures as bifunctional electrocatalysts for water-splitting.
  • 29 Apr 2026
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Spectroscopic, electrochemical, thermodynamic and theoretical insights into solvent effects for the intensification of the modified OxFA process.
  • 29 Apr 2026
  • RSC advances
Electronic structure engineering of phosphorene through transition metal functionalization for toxic gas detection.
  • 29 Apr 2026
  • RSC advances
New hybrid compound (C6H10N2)(H2PO4)2: insights into its structural, optical, and electrical behavior for electronic applications.
  • 29 Apr 2026
  • RSC advances
Mechanistic and signal engineering of nitrogen-doped MXene quantum dots in electrochemical and electrochemiluminescence sensing platforms.
  • 29 Apr 2026
  • RSC advances
Synergetic design of a sulfonated polyimide matrix anchored with phosphotungstic acid-loaded MOFs for enhanced fuel cell efficiency.
  • 29 Apr 2026
  • RSC advances
High-performance CeO2/rGO hybrid nanostructures as bifunctional electrocatalysts for water-splitting.
  • 29 Apr 2026
  • RSC advances
Spectroscopic, electrochemical, thermodynamic and theoretical insights into solvent effects for the intensification of the modified OxFA process.
  • 29 Apr 2026
  • RSC advances

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