SCIESCOPUSQ3
PARTICLE & PARTICLE SYSTEMS CHARACTERIZATION
WILEY-V C H VERLAG GMBH, Germany
PARTICLE & PARTICLE SYSTEMS CHARACTERIZATION is an academic journal published by WILEY-V C H VERLAG GMBH (Germany). Identifiers: ISSN 0934-0866, eISSN 1521-4117. Indexed in SCIE, SCOPUS. Metrics: JIF 3.0, CiteScore 5.0, SJR 0.625, SNIP 0.58. Subject areas: CHEMISTRY, MATERIALS SCIENCE, MULTIDISCIPLINARY, NANOSCIENCE & NANOTECHNOLOGY. tlooto lists 2,834 papers from this journal.
CiteScore
5.00
Scopus の引用指標
SJR
0.625
SCImago 順位
SNIP
0.58
出典で正規化した影響度
パーセンタイル順位
-
JIF のパーセンタイル順位
ジャーナルプロフィール
- ISSN
- 0934-0866
- eISSN
- 1521-4117
- 略語
- PART PART SYST CHAR
- 出版社
- WILEY-V C H VERLAG GMBH
- 国
- Germany
Web of Science の分野
SCIECHEMISTRY, MATERIALS SCIENCE, MULTIDISCIPLINARY, NANOSCIENCE & NANOTECHNOLOGY, PHYSICAL
Scopus ASJC の分野
16002500 General Materials Science3104 Condensed Matter Physics
キーワード
Chemistry, Physical | Nanoscience & Nanotechnology | Materials Science, Multidisciplinary
Papers in this journal
Recent papers
- Synthesis and Nanostructure Characterization of New Aero‐ CeO2${\rm CeO}_2$ /(Zn) TiO2${\rm TiO}_2$ Composite Networks for (photo‐)Catalytic Applications
2026
- Oxygen Vacancy‐Rich NaV6O15 Nanorods for Boosting Zn‐Ion Battery Performance
2026
- Humic Acid Modified Jeanbandyite for Tetracycline Removal: Synthesis, Characterization, and Adsorption Studies
2026
- Development and Characterization of Copaiba Oil‐Loaded Polymeric Nanocapsules With Enhanced Antitumor Activity Against Breast Cancer Cells
2026
- Removal of Inorganic Contaminants Using Sodalite Synthesized From Alum Sludge
2026
Most cited papers
- Mercury Porosimetry: A General (Practical) Overview
2006 · 889 citations
- High‐Capacity Anode Materials for Lithium‐Ion Batteries: Choice of Elements and Structures for Active Particles
2014 · 670 citations
- Graphene Quantum Dots
2014 · 365 citations
- Successive, Seed‐Mediated Growth for the Synthesis of Single‐Crystal Gold Nanospheres with Uniform Diameters Controlled in the Range of 5–150 nm
2014 · 336 citations
- Fabrication of Macroscopically Flexible and Highly Porous 3D Semiconductor Networks from Interpenetrating Nanostructures by a Simple Flame Transport Approach
2013 · 307 citations