Technical FAQs 4

Does sulfur doping affect silicon anodes in lithium-ion batteries?

Finally, the full cell displays a capacity retention of 72.9% after 100 cycles at 2 C. In summary, this work highlights the impact of interface modification by sulfur doping on the silicon anode materials, hence offering a new approach for the development of fast-charging and durable silicon anodes in lithium-ion batteries.

Why is silicon a promising anode material for lithium-ion batteries?

Emerging topics include pre-lithiation, advanced binders, and novel electrolytes. Strong collaboration among nations; individual prolific author networks are weaker. Silicon (Si) is a promising anode material for the next generation of lithium-ion batteries (LiBs) due to its high theoretical capacity.

Are sn-doped SiNWs a good anode material for lithium-ion batteries?

In addition, the prepared Sn-doped SiNWs as the anode material in lithium-ion batteries exhibit excellent performance with a high initial Coulombic eficiency of 85.4 %, and a substantial reversible capacity of 1133 mAh g 1 even after 500 cycles at 4 A g 1.

Can silicon anodes be used for large-scale battery applications?

Overcoming these obstacles is essential to unlock the full potential of silicon anodes for large-scale battery applications. Achieving high areal capacity is critical for practical lithium-ion batteries, as it maximizes energy density by minimizing the weight percentage of inactive components .

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