Advanced Materials

ISSN: 0935-9648

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Advanced Materials Q1 Unclaimed

Wiley-Blackwell United States
Unfortunately this journal has not been claimed yet. For this reason, some information may be unavailable.

Advanced Materials (http://www.advmat.de) is an international peer-reviewed journal that covers all aspects of materials science. Categories of contribution for the journal are Communications, Review Articles, Progress Reports, Research News, Essays, and Correspondences. Communications should represent novel research and significant advances in the field of materials science. Only manuscripts in English are accepted. Contributors should bear in mind the interdisciplinary nature of the readership, always emphasizing the importance of the topic to the materials science research community on the whole. It has an SJR impact factor of 9,191.

Advanced Materials focuses its scope in these topics and keywords: adv, mater, materials, graphene, solar, organic, based, films, performance, quantum, ...

Type: Journal

Type of Copyright:

Languages: English

Open Access Policy:

Type of publications:

Publication frecuency: -

Metrics

Advanced Materials

9,191

SJR Impact factor

640

H Index

2652

Total Docs (Last Year)

4816

Total Docs (3 years)

205113

Total Refs

141178

Total Cites (3 years)

4781

Citable Docs (3 years)

28.44

Cites/Doc (2 years)

77.34

Ref/Doc

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Aims and Scope


adv, mater, materials, graphene, solar, organic, based, films, performance, quantum, d, cells, polymer, nanoparticles, optical, liquid, electrochemical, thin, engineering, nanowires, perovskite, photonic, printing, reversible, surface, switching,



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Self-Organization of Magnetic Nanosized Cobalt Particles

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Formation of the Interfacial Dipole at Organic-Organic Interfaces: C60/Polymer Interfaces

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Inhibiting Random Droplet Motion on Hot Surfaces by Engineering Symmetry-Breaking Janus-Mushroom Structure

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Soft Machines That are Resistant to Puncture and That Self Seal

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Comparison of the Mobility-Carrier Density Relation in Polymer and Single-Crystal Organic Transistors Employing Vacuum and Liquid Gate Dielectrics

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