AI Article Synopsis

  • Magnesium-sulfur batteries are a new technology that offers high energy density, safety, and cost-effectiveness, potentially changing the energy storage market.* -
  • The review focuses on developing special electrolytes that enable the efficient movement of magnesium ions while ensuring compatibility with sulfur components and reducing the shuttle effect caused by magnesium polysulfides.* -
  • It emphasizes the need for further research on reaction mechanisms and innovative electrolytes to improve the performance of magnesium-sulfur batteries and address current limitations.*

Article Abstract

Magnesium-sulfur batteries are an emerging technology. With their elevated theoretical energy density, enhanced safety, and cost-efficiency, they have the ability to transform the energy storage market. This review investigates the obstacles and progress made in the field of electrolytes which are especially designed for magnesium-sulfur batteries. The primary focus of the review lies in identifying electrolytes that can facilitate the reversible electroplating and stripping of Mg ions whilst maintaining compatibility with sulfur cathodes and other battery components. The review also addresses the critical issue of managing the shuttle effect on soluble magnesium polysulfide by looking at the innovative engineering methods used at the sulfur cathode's interface and in the microstructure design, both of which can enhance the reaction kinetics and overall battery efficiency. This review emphasizes the significance of reaction mechanism analysis from the recent studies on magnesium-sulfur batteries. Through analysis of the insights proposed in the latest literature, this review identifies the gaps in the current research and suggests future directions which can enhance the electrochemical performance of Mg-S batteries. Our analysis highlights the importance of innovative electrolyte solutions and provides a deeper understanding of the reaction mechanisms in order to overcome the existing barriers and pave the way for the practical application of Mg-S battery technology.

Download full-text PDF

Source
http://www.ncbi.nlm.nih.gov/pmc/articles/PMC10976270PMC
http://dx.doi.org/10.3390/molecules29061234DOI Listing

Publication Analysis

Top Keywords

magnesium-sulfur batteries
16
batteries analysis
8
review
6
batteries
5
advances challenges
4
challenges electrolyte
4
electrolyte development
4
magnesium-sulfur
4
development magnesium-sulfur
4
batteries comprehensive
4

Similar Publications

Want AI Summaries of new PubMed Abstracts delivered to your In-box?

Enter search terms and have AI summaries delivered each week - change queries or unsubscribe any time!