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Constructing Three-Dimensional Porous SnS/RGO as Superior-Rate and Long-Life Anodes for Lithium-Ion Batteries. | LitMetric

Tin-based sulfides, possessing a unique layered structure and a high theoretical capacity, stand as highly prospective contenders for anode materials in lithium-ion batteries (LIBs). Nevertheless, the pronounced volume expansion that occurs during lithium storage and poor capacity retention have limited its progress toward commercialization. Herein, we designed and prepared a SnS/RGO composite with a three-dimensional porous structure by sulfurizing the SnO(OH)/GO precursor. Through the integration of the structural architecture during the solvent reaction process and the nanomodification during the vulcanization process, the prepared SnS/RGO composite has a porous structure, and the particle size is optimized at 2-5 nm. This structure is conducive to improving the conductivity of electrode materials, increasing reaction active sites, and enhancing the structural stability of electrode materials. Consequently, the synthesized SnS/RGO composite is capable of retaining reversible capacities of 975 and 592 mA h g after 250 cycles at 1.0 and 2.0 A g, respectively. Moreover, it exhibits a capacity of 349 mA h g after 1100 cycles at 5.0 A g. This efficient and convenient preparation method provides guidance for enhancing the lithium storage properties of tin-based sulfides.

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http://dx.doi.org/10.1021/acs.langmuir.4c04214DOI Listing

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