Default: Materials Science-Poland

ISSN: 2083-1331

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Materials Science-Poland Q3 Unclaimed

Germany
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Materials Science-Poland is a journal indexed in SJR in Materials Science (miscellaneous) and Condensed Matter Physics with an H index of 45. It is an CC BY-NC-ND Journal with a Single blind Peer Review review system The scope of the journal is focused on materials science, nanomaterials, microelectronics, photonics, micromachining, smart materials. It has an SJR impact factor of 0,357 and it has a best quartile of Q3. It is published in English. It has an SJR impact factor of 0,357.

Type: Journal

Type of Copyright: CC BY-NC-ND

Languages: English

Open Access Policy: Open Access

Type of publications:

Publication frecuency: -

Metrics

Materials Science-Poland

0,357

SJR Impact factor

45

H Index

48

Total Docs (Last Year)

155

Total Docs (3 years)

2052

Total Refs

294

Total Cites (3 years)

155

Citable Docs (3 years)

2.06

Cites/Doc (2 years)

42.75

Ref/Doc

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Aims and Scope


Materials science Nanomaterials Microelectronics Photonics Micromachining Smart materials



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(Bi2Te3)0:25(Sb2Te3)0:75 crystal structure improvements with excess Te as studied by AFM, SEM, EBSD and XRD

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Dielectric property of Cu powder/polymer composites

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One-pot synthesis of magnetic gamma-Fe2O3 nanoparticles in ethanol-water mixed solvent

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Bulk ZnO nanorod assemblies fabricated by spin coating of organo-precursor gels on CuO nanowires

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A high acid mesoporous USY zeolite prepared by alumination

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Electrically active defects in SiC Schottky barrier diodes

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The influence of the deposition time on morphological and optical properties of Cu x S films deposited on polypropylene substrate

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Sol-gel-derived hybrid materials multi-doped with rare-earth metal ions

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Nanoalumina obtained by pyrosol method

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Magnetic resonance study of gamma-Fe2O3 nanoparticles dressed in oxygen based free radicals

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Investigation of effects produced by chemical functionalization in single-walled and multi-walled carbon nanotubes using Raman spectroscopy

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Photo-induced superhydrophilicity of nanocomposite TiO2-SiO2 thin film

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