Thin-film flexible solar cells are lightweight and mechanically robust. Along with rapidly advancing battery technology, flexible solar panels are expected to create niche products that require lightweight, mechanical flexibility, and moldability into complex shapes, such as roof-panel for electric automobiles, foldable umbrellas, camping tents, etc. In this paper, we provide a comprehensive assessment of relevant…
Materials Reports Energy Template
Write in a clean editor, then format for Materials Reports Energy in one click — DocuGuru applies the official Elsevier template with numbered references and exports a submission-ready PDF plus the editable LaTeX source. Free to start.
About the Materials Reports Energy format
Materials Reports Energy is a peer-reviewed journal published by Elsevier, covering Electrocatalysts for Energy Conversion, Advanced Photocatalysis Techniques, Advanced battery technologies research.
| Publisher | Elsevier |
|---|---|
| Reference style | Numbered (Elsevier) Numbered — [1], [2] in the text [1] A. Smith, B. Jones, C. Lee, A representative article title, Materials Reports Energy 12 (2023) 45–58.
Formats any DOI in Materials Reports Energy style. No sign-up. |
| Publishes research in | Electrocatalysts for Energy Conversion Advanced Photocatalysis Techniques Advanced battery technologies research Advancements in Battery Materials CO2 Reduction Techniques and Catalysts |
| ISSN | 2666-9358 |
| Citation impact (2-yr) | 5.78 |
| h-index | 35 |
| i10-index | 106 |
| Total citations | 4,018 |
| Open access | Yes |
| Top institutions publishing here | Suzhou University of Science and Technology |
| Journal website | www.sciencedirect.com |
| You get | A submission-ready PDF and the editable LaTeX source — ready to submit. |
Papers published in Materials Reports Energy per year
Citation impact of Materials Reports Energy by publication year
Citations each year’s papers have accumulated so far — the most recent years are still building up.
Most-cited papers in Materials Reports Energy
Electrochemical water splitting powered by renewables-generated electricity represents a promising approach for green hydrogen production. However, the sluggish kinetics for the hydrogen evolution reaction (HER) under an alkaline medium causes a massive amount of energy losses, hindering large-scale production. Exploring efficient and low-cost catalyst candidates for large-scale H2 generation becomes a crucial demand. Single-atom catalysts…
High temperature solid oxide fuel cell (SOFC) is the most efficient and clean energy conversion technology to electrochemically convert the chemical energy of fuels such as hydrogen, natural gas and hydrocarbons to electricity, and also the most viable alternative to the traditional thermal power plants. However, the power output of a SOFC critically depends on…
Two-dimensional (2D) materials have received tremendous attention because they possess a set of merits not available in bulk materials, such as large specific surface area, low energy barrier for electron transportation and short ion diffusion path. These advantages are desirable especially for the electrodes in electrochemical energy storage devices. MXenes, first synthesized in 2011 by…
Metal oxide-based electrocatalysts are promising alternatives to platinum group metals for water splitting due to their low cost, abundant raw materials, and impressive stability. This article covers recent progress in various types of metal oxides tailored for hydrogen and oxygen evolution reactions, discussing their crystal structure, composition, and surface morphology influence on performance. Strategies like…