Building a High-Potential Silver-Sulfur Redox Reaction Based on the Hard-Soft Acid-Base Theory

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Abstract

Sulfur holds immense promise for battery applications owing to its abundant availability, low cost, and high capacity. Currently, sulfur is commonly combined with alkali or alkaline earth metals in metal-sulfur batteries. However, these batteries universally face challenges in cycling stability due to the inevitable issue of polysulfide dissolution and shuttling. Additionally, the inferior stability of metal sulfide discharge compounds results in low S0/S2- redox potentials (

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Katiyar, S., Hou, W., Luciano Rodriguez, J., Gomez, J. F. F., Valle-Perez, A. D., Qiu, S., … Wu, X. (2024). Building a High-Potential Silver-Sulfur Redox Reaction Based on the Hard-Soft Acid-Base Theory. Energy and Fuels, 38(12), 11233–11239. https://doi.org/10.1021/acs.energyfuels.4c00817

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