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Journal

Materials Chemistry and Physics

ISSN:
0254-0584
3
h-index
50
Citations
37
Works
0.09
2-year mean citedness

Trust signals

1 of 3 signals present

Independent positive signals — not a single “predatory/legitimate” verdict, but a converging picture.

  • DOAJ
    No data
    doaj.org
  • OAK list
    No data
    OAK
  • Valid ISSN
    Present
    ISSN

This is an information label, not an official ruling. A missing signal is not a penalty — a regional journal may simply not be in DOAJ.

Most-cited works

  1. Liquid-phase epitaxy of solid solutions (Ge2)1−x(ZnSe)x200125 citations
  2. Role of Zn cations substitution on structural, vibrational, elastic, dielectric, bandwidth, and microwave absorbance of Co–Cd ferrites at high frequencies20244 citations
  3. New triglycidyl ether triazine as a protective agent for metal: Comprehensive analysis20244 citations
  4. Facile synthesis, structural, magnetic and enhanced Fluoride (F−1) adsorptive properties of magnesium ferrite and oryza sativa composites20253 citations
  5. Cr-doped Li-based <mml:math xmlns:mml="http://www.w3.org/1998/Math/MathML" altimg="si1.svg"><mml:mrow><mml:mi mathvariant="normal">β</mml:mi></mml:mrow></mml:math>-(Beta) type hexaferrites: XRD, FTIR, XPS and dielectric evaluations for high-frequency applications20242 citations
  6. Impact of rare earth cerium (Ce) substitution on structural, magnetic and electrochemical properties of lithium ferrites: A comprehensive study20252 citations
  7. Pt decorated BN nanocage as an effective sensor material for the detection of 5-Fluorouracil anticancer drug20262 citations
  8. Assessment of the adsorption mechanism of amantadine drug onto pristine, Si- and Ge-doped Al12N12, and Al12P12 nanocages: A comparative DFT study20231 citations
  9. Study of structural, spectral and dielectric properties of Dy substituted Sr2Co2Fe12-xDyxO22 Y-type hexaferrites via sol-gel auto-combustion method for microwave absorption application20241 citations
  10. Utilizing sustainable trichalcogenide semiconductor BaS:MnS:DyS to maximize supercapacitor efficiency via innovative single-source precursor method20241 citations