Journal of Advanced Electrochemical Storage

ISSN (online): Pending

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Open access International Journal

Journal of Advanced Electrochemical Storage is an open access and peer-reviewed journal, published by Public University-Based Journals.

Journal Poster

The Journal of Advanced Electrochemical Storage (JAES) is a peer-reviewed, Gold Open Access journal committed to publishing high-quality, interdisciplinary research in the field of electrochemical energy storage. With the growing global emphasis on clean and sustainable energy, JAES serves as a critical platform for researchers, scientists, and engineers to share pioneering innovations and in-depth insights into the development of advanced energy storage systems.

JAES covers a comprehensive range of topics spanning fundamental electrochemistry, cutting-edge materials science, system integration, and practical applications. The journal is particularly focused on breakthroughs in batteries, supercapacitors, redox flow batteries, solid-state technologies, and hybrid systems that push the boundaries of energy density, safety, performance, and environmental sustainability.

All articles published in JAES are freely accessible to the global scientific community and the public, ensuring maximum visibility and impact. As part of its commitment to equitable knowledge dissemination, JAES has waived all Article Processing Charges (APCs) until 31 December 2025, making it possible for authors to publish without financial constraints during this promotional period.

The journal publishes original research articles, reviews, perspectives, and short communications, and fosters cross-disciplinary collaboration aimed at solving real-world energy challenges.

Journal Abbreviation: J. Adv. Electro. Storage
ISSN: To be assigned soon
Publisher: PubJ
Frequency: Quarterly

Open Access Policy: Gold Open Access (CC BY License)


LATEST ARTICLES

Research Article

Next-Generation Biosensors Based on Boron Nitride: Mechanisms, Platforms, and Future Prospects

  • By Tholkappiyan Ramachandran, Ramesh Kumar Raji - 02 Sep 2025
  • Journal of Advanced Electrochemical Storage, Volume : 1 (2025), Issue: 1 (September), Pages: 44 - 58
  • Research Article
  • Accepted 07/September/2025
Abstract:  

Boron nitride (BN) nanomaterials including nanosheets, nanotubes, and nanocrystals have emerged as promising platforms for next generation biosensing due to their unique structural, electronic, and biocompatible properties. This review presents a Read more

Research Article

Investigation of magnetic and structural properties on Cobalt doped Barium Ferrite via Co-precipitation Method

  • By S. Vadivelan, S.Sowmiya - 07 Aug 2025
  • Journal of Advanced Electrochemical Storage, Volume : 1 (2025), Issue: 1 (August), Pages: 30 - 43
  • Research Article
  • Accepted 07/August/2025
Abstract:  

In this paper, it is planned to synthesize the cobalt doped barium ferrite using co-precipitation technique at different ratios. This is done in order to avoid the magnetic loss and increasing the permeability of this material. The different ratio Read more

Research Article

Effect of the templating cationic surfactant assisted with Vanadium Pentoxide on the synthesis and structure of V2O5 as tailored Electrode material

  • By F. Regan Maria Sundar Raj - 25 Jun 2025
  • Journal of Advanced Electrochemical Storage, Volume : 1 (2025), Issue: 1 (June), Pages: 21 - 29
  • Accepted 25/June/2025
Abstract:  

A facile synthesis of inimitable hierarchical one-dimensional (1D) V2O5 nanorods were successfully developed by simple hydrothermal process. In this work, the effects of the Nature of the Tem-plating Surfactant cetyltrimethylammonium bromide (CTAB Read more

Research Article

Solvent-Engineered Synthesis of V₂O₅ for Enhanced Supercapacitor Performance

  • By Tholkappiyan Ramachandran, Santhoshkumar Palanisamy, Ramesh Kumar Raji - 18 Jun 2025
  • Journal of Advanced Electrochemical Storage, Volume : 1 (2025), Issue: 1 (June), Pages: 1 - 20
  • Accepted 18/June/2025
Abstract:  

Vanadium pentoxide (V₂O₅) is considered a promising electrode material for supercapacitors due to its rich redox chemistry, high theoretical capacitance, and layered structure condu Read more