ISSN: 1359-0286
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Current Opinion in Solid State and Materials Science Q1 Unclaimed
Current Opinion in Solid State and Materials Science is a journal indexed in SJR in Materials Science (miscellaneous) with an H index of 132. It has an SJR impact factor of 2,42 and it has a best quartile of Q1. It is published in English. It has an SJR impact factor of 2,42.
Type: Journal
Type of Copyright:
Languages: English
Open Access Policy: Open Choice
Type of publications:
Publication frecuency: -
- €
Inmediate OANPD
Embargoed OA0 €
Non OAMetrics
2,42
SJR Impact factor132
H Index27
Total Docs (Last Year)100
Total Docs (3 years)3855
Total Refs1276
Total Cites (3 years)95
Citable Docs (3 years)12.31
Cites/Doc (2 years)142.78
Ref/DocOther journals with similar parameters
Annual Review of Condensed Matter Physics Q1
Advanced Materials Q1
Advanced Energy Materials Q1
Progress in Materials Science Q1
Materials Science and Engineering: R: Reports Q1
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Aims and Scope
Best articles by citations
Block copolymer synthesis
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View moreModelling and simulation of solids
View moreDynamic fatigue of silicon
View moreKinetics of phase transitions in block copolymers
View moreSelf-organization phenomena during developing of cotton fibers
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View moreThe physics of magnetic materials from ab-initio calculations
View moreSupercritical fluid applications in materials science
View moreEvolutionary techniques in atomistic simulation: thin films and nanoparticles
View moreSurface science
View moreEditorial overview
View moreEngineered and designed peptide-based fibrous biomaterials
View moreMetals and alloys
View moreMetals and alloys
View moreSynthesis, structure, and magnetic properties of n=2 Ruddlesden-Popper manganates
View moreCollagenous tissue formation in association with medical implants
View moreFeedstock recycling of polymer wastes
View moreSupercritical fluid processing of polymers: composite particles and porous materials elaboration
View moreStructural ceramic composites
View moreRecent advances in nanocatalysis research
View moreLocal structure determination on the atomic scale
View morePolymers
View morePolymers
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