arXiv · 2505.16779
Phase engineering of MoS$_2$ monolayers: A pathway to enhanced lithium-polysulfide battery performance
Abstract
This study explores the potential of MoS$_2$ polymorphs, specifically the semiconducting 2H phase and the metallic 1T$^\prime$ phase, as anchoring materials to enhance the electrochemical performance of lithium-sulfur (Li--S) batteries. Using density functional theory calculations, we show that 1T$^\prime$-MoS$_2$ exhibits stronger Li--S interactions, greater charge transfer, and enhanced catalytic activity compared to its 2H counterpart, effectively suppressing polysulfide dissolution and facilitating redox reactions. The reversible 2H$\leftrightarrow$1T$^\prime$ transition offers a tunable design space for balancing conductivity and structural stability. These findings position hybrid MoS$_2$ architectures as promising platforms for next-generation Li--S batteries with improved energy density, cycling stability, and rate capability.
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J. W. González, E. Flórez, R. A. Gallardo, J. D. Correa. 2025-05-22. Phase engineering of MoS$_2$ monolayers: A pathway to enhanced lithium-polysulfide battery performance. https://doi.org/10.1016/j.flatc.2025.100938
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