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- W4382808679 abstract "Li–S batteries have gained spectacular momentum in the past few years as highly utilized energy storage devices on account of their low cost and high energy density. In spite of that, these devices face challenges of poor sulfur utilization, growth of dendrites on lithium anode, and formation of soluble discharge products leading to low cycling stability that reserve their commercial level applications. The use of free-standing architectures has contributed to solving challenges faced by Li–S batteries because of their tunable features, high mechanical properties, and strong electrical conductivity. However, the real solution lies behind the introduction of optimized substances possessing specific properties required to cope with the challenges faced by Li–S batteries. The family of MXenes derived from MAX phases have revolutionized the electrode development and functional interlayer synthesis for energy-storing devices attributing to their high energy density, and rich mechanical, electronic, and electrochemical properties. The MXenes retain metallic conductivity, rich surface functionalities, ultrathin structures with high surface area, and macrostructure-level adjustability that endows them to be promising candidates for administration in Li–S batteries. In this chapter, the progress of Li–S batteries from development of free-standing networks to introduction of MXenes along with their efficient synthetic approaches and wide applications in batteries has been discussed." @default.
- W4382808679 created "2023-07-02" @default.
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- W4382808679 date "2023-01-01" @default.
- W4382808679 modified "2023-10-16" @default.
- W4382808679 title "Design and Applications of MXene-Based Li–S Batteries" @default.
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- W4382808679 doi "https://doi.org/10.1007/978-981-99-2038-9_9" @default.
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