Progress in Physics of Applied Materials

Progress in Physics of Applied Materials

Number of Volumes 7
Number of Issues 14
Number of Articles 149
Number of Contributors 370
Article View 78,726
PDF Download 79,229
View Per Article 528.36
PDF Download Per Article 531.74
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Time to Accept (Days) 61
Number of Indexing Databases 12
Number of Reviewers 543

The Progress in Physics of Applied Materials is an open access journal that published biannual(Quarterly from Vol6) and is an international medium for publishing experimental and theoretical papers on materials with wide varieties of applications which was founded in 2021 by Semnan University. The experimental scope of the journal includes the synthesis, growth, processing, and characterization of new materials for improving their electrical, optical, dielectric, and magnetic properties. Theoretical and analytical papers are also within the scope of the journal. The journal also publishes review articles, both short and specific or long and general, within the scope of the journal. The papers should contain extensive and novel experimental and theoretical works with rigorous analysis and sound interpretation.  Interdisciplinary articles are also welcome. 

 

We are pleased to inform you that, according to the recent approval of the Editorial Board and relevant authorities, the publication frequency of this journal has been changed from a biannual to a quarterly journal. This change aims to enhance scientific quality, accelerate the publication process, and strengthen the dynamic interaction among researchers and authors.

Scopus We are pleased to announce that the application for Scopus membership of the Progress in Physics of Applied Materials (PPAM) has been accepted on February 17, 2025.

SCImago Journal Rank (SJR)

COPE We are pleased to announce that the application for COPE  membership of the Progress in Physics of Applied Materials (PPAM) has been accepted on June, 2024.

https://members.publicationethics.org/members/progress-physics-applied-materials

 

The Progress in Physics of Applied Materials (PPAM) utilizes "Plagiarism Detection Software (iThenticate)" for checking the originality of submitted manuscripts in the reviewing process.

 

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The Progress in Physics of Applied Materials doesn’t accept and publish any advertisement in the journal website and articles.

Article Processing Charge (APC)

In accordance with the policy of Semnan University Press, an Article Processing Charge (APC) applies to all manuscripts accepted for publication in the Journal of Progress in Physics of Applied Materials (PPAM). For submissions made on or after May 1st , 2026, the APC is USD 400 for non-Iranian corresponding authors and 20,000,000 Iranian Rials for Iranian corresponding authors.

Please note that this fee applies only to manuscripts that successfully pass the peer-review process and are accepted for publication; there are no fees associated with initial submission or the review process. This APC supports the various stages of the publishing workflow, including editorial handling, peer review, copyediting, typesetting, and long-term archiving. These charges enable the journal to maintain high scholarly standards and ensure the broad dissemination and accessibility of published research to a global audience. Waivers may be granted upon request by the corresponding author, subject to the approval of the Editor-in-Chief.

 

 

Current Issue: Volume 7, Issue 1 - Serial Number 14, Spring 2027 (In Progress) 

Structural and Optical Properties of NiO-Doped WO₃ Thin Films Prepared by Pulsed Laser Deposition

Pages 1-8

10.22075/ppam.2026.40444.1204

Batool Faydhe Al-Azzawi, Hussein J. Abdul Karim, Mohammed Abdilridha Alrekabi, Mustafa E. Hammadi, Laith I. Khalil

Keywords Cloud

  • Optical properties
  • density functional theory
  • Magnetic properties
  • electrodeposition
  • Hydrothermal method
  • band gap
  • refractive index
  • Induction heating
  • Graphene Oxide
  • Sol-Gel Method
  • Nanocomposites
  • Graphene
  • Nanomaterial
  • Chitosan
  • PVA
  • COMSOL Multiphysics
  • Nanoparticles
  • DFT
  • Supercapacitors
  • Supercapacitor
  • Fractional Schrödinger Equation
  • Spinel Ferrite
  • Green synthesis
  • Sintering Temperature
  • Adsorption
  • Hydrothermal
  • transmission coefficient
  • Magnetic hyperthermia
  • SCAPS-1D
  • Perovskite solar cells
  • TiO2 nanostructures
  • Efficiency
  • Resistivity
  • Activated carbon
  • Simulation
  • Thermal treatment
  • Nonlinear optics
  • Seebeck coefficient
  • Geant4
  • Magnetization
  • Superarrival
  • FTIR
  • Electrical properties
  • Czochralski method
  • Quantum efficiency
  • luminescence
  • Copper spinel ferrite
  • Electronic properties
  • Binder-free electrode
  • liquid crystal
  • Single crystal X-ray diffraction
  • Sol-gel
  • Thermal Evaporation
  • antibacterial
  • solar cell
  • Morphology
  • Molecular dynamics simulation
  • Optical fibers
  • Solid State
  • PC1D
  • Half-metallic
  • CuFe2O4
  • Cyclic voltammetry
  • Perovskite
  • Photovoltaic
  • CO2 Conversion
  • Metal-Organic Framework (MOF)
  • Photocatalytic activity
  • breast Cancer
  • Manganites
  • Germanene
  • Thermal hysteresis
  • water contact angle
  • Blood serum
  • Nanoferrate
  • Process parameter
  • Composite
  • crystal structure
  • Laser Beam Intensity
  • ZnO NPs
  • Surface Charge Density
  • Protein
  • Core@shell structure
  • Cathodic electrical deposition method
  • Leucas cephalotes (Lc)
  • Molecular Simulations
  • Orthoferrites
  • Drude model
  • titanium doping
  • radiation
  • Spiro-OMeTAD
  • Ferromagnetic coupling
  • contact corrosion
  • Paraxial wave equations
  • Copper Zinc Tin Sulfur
  • Clogston-Chandrasekhar limit
  • Coercivity
  • Verdet constant
  • Photosensor
  • Pulsed electron beam irradiation
  • ZnO/ZnFe2O4 nanocomposite
  • Antireflection coating
  • Universal Curve
  • Pulse propagation
  • Ion drift motion
  • PbS
  • Polyvinyl Alcohol Polymer (PVA)
  • Growth mechanism
  • Co2+-doping
  • Alkali- Halides
  • SnO2, Boron, Spray pyrolysis
  • Zigzag Edges
  • nanocore-metallic shell
  • quantum teleportation
  • GMR
  • Keywords: Zinc oxide nanoparticles
  • powder X-Ray diffraction
  • Plasmonics
  • Mixing pairing
  • Vanadium oxide
  • ITO substrates
  • Copper Spinel Bismuth
  • Crystallite sizes
  • Sensor
  • Metals
  • Ionizing ray sensor, Thermoluminescence
  • (WO₃)₁₋ₓ(NiO)ₓ Films
  • BaFe12O19/rGO nanocomposites
  • Tribology
  • Optoelectronic
  • Surface-Enhanced Raman Scattering (SERS)
  • Oxide semiconductors
  • MgF2 and SiO2 thin films
  • liquid interaction, Surface modification, AFM, SEM
  • Silicon (Si)
  • Polycrystalline aggregates
  • Fluoride
  • finite element method
  • Lattice micro-strain
  • UV-vis spectra
  • Bharatiya Nirdeshak Dravya (BND®)
  • Superparamagnetism
  • Hexaferrite
  • Split-Step finite difference method
  • Single crystal
  • Quantum antidots
  • Ferrimagnetic to Diamagnetic Transition
  • Plasma treatment
  • Zn/Mn Co-Substitutions
  • HIV-1
  • Particle size
  • Structure Phase Transition
  • Wastewater treatment
  • Yb2V2O7
  • Physicochemical properties
  • ion migration
  • Attenuation Coefficient
  • Lanthanum manganite
  • Finite element analysis
  • Porous materials
  • Visible Light
  • Calcination temperature
  • plasmon frequency
  • Intrinsic Defects
  • Impurities
  • npn transistor
  • Generalized Kane-Mele model
  • conductivity
  • MXenes Nanoribbons
  • Gamma shielding
  • ZnF2O4 nanoparticles
  • co-precipitation
  • CO2 laser
  • 5CB
  • Manganite
  • Antimicrobial Activity
  • Aluminum Gallium Arsenide (AlGaAs)
  • Raman spectroscopy
  • Photocatalytic
  • Defect
  • hysteresis
  • CuO
  • Additives
  • Potential Asymmetry
  • Perovskites
  • Multi-walled carbon nanotubes
  • RhB dye degradation
  • Fiber Bragg grating
  • Reflection
  • Fe3O4 ferrite
  • Ce-doped CuO
  • Green energy
  • Sodium borohydride
  • Lead-free
  • Glass
  • intensity calibration
  • Heat Capacity
  • Rhodamine B
  • Magnetic Intermetallic
  • Landau theory