Mass production of antimony energy storage batteries

4 FAQs about [Mass production of antimony energy storage batteries]

Why is antimony under intense study?

Antimony is under intense study because of its unique and physical properties such as in investigations as a potential new nanocomposite (consisting of Sb2O3 and Fe3O4) for use as new anode materials for lithium-ion batteries and for other high technology applications.

How much antimony is in a lead-acid battery?

Antimony is a major component of conventional lead-acid batteries, normally as a hardening agent for the lead terminals and plates, which typically contain from 8% to 11% antimony, but content can be as high as 15%.

Can antimony materials be used in commercial production?

The composite modification means can realize more considerable electrochemical performance enhancement [5, 58]. Therefore, choosing pure antimony material may be one of the first choices for commercial production. In the sequel, we present applications of Sb-based anode materials and their derivatives and discuss their practical feasibility.

Why do antimony base metal anodes have high cycling stability?

This is attributable to their compositional disorder and structural disorder. This property can effectively alleviate the structural internal stresses generated in the alloying mechanism of antimony-based metals and their derivatives. This provides a clear idea for developing antimony base metal anodes with high cycling stability.

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