SCIESCOPUSQ1
Materials Reports: Energy
KEAI PUBLISHING LTD, China
Materials Reports: Energy is an academic journal published by KEAI PUBLISHING LTD (China). Identifiers: eISSN 2666-9358. Indexed in SCIE, SCOPUS. Metrics: JIF 13.8, CiteScore 20.3, SJR 2.756, SNIP 1.81. tlooto lists 239 papers from this journal.
CiteScore
20.30
Scopus citation metric
SJR
2.756
SCImago rank
SNIP
1.81
Source normalized impact
Percentage rank
-
JIF percentile rank
Journal profile
- ISSN
- -
- eISSN
- 2666-9358
- Abbreviation
- MATER REP-ENERGY
- Publisher
- KEAI PUBLISHING LTD
- Country
- China
Web of Science categories
No Web of Science category data available.
Scopus ASJC categories
16032101 Energy (miscellaneous)2501 Materials Science (miscellaneous)2505 Materials Chemistry
Papers in this journal
Recent papers
- Comprehending the Frontiers of Flexible Supercapacitors: Materials, Fabrication Techniques, and Performance Metrics
2026 · 3 citations
- Inhibiting overoxidation of ruthenium oxides by zinc doping for promoting a highly efficient proton exchange membrane water electrolyzer
2026 · 1 citations
- STEG devices coupled with circuit control achieving the conversion and storage regulation of solar thermal energy into electrical energy
2026
- Dual-atom catalysts for lithium-sulfur battery cathodes: Synthesis, characterization, and catalytic mechanisms
2026
- In-situ phase formation enables graded thermal expansion and structural stability in reversible protonic ceramic electrochemical cell cathodes
2026 · 2 citations
Most cited papers
- Designing single-atom catalysts toward improved alkaline hydrogen evolution reaction
2022 · 144 citations
- Progress in metal oxide-based electrocatalysts for sustainable water splitting
2024 · 105 citations
- MXenes with applications in supercapacitors and secondary batteries: A comprehensive review
2022 · 103 citations
- Electrolyte materials for protonic ceramic electrochemical cells: Main limitations and potential solutions
2022 · 86 citations
- Hybrid water electrolysis: Replacing oxygen evolution reaction for energy-efficient hydrogen production and beyond
2020 · 75 citations