As the negative electrode of LIBs, the prepared (SnS-SnS2-S) /FLG composite has high capacity, high rate and long life. In addition, unlike nano-structured or porous SNS2-based anode materials, micro-nano-structured (SnS -- SnS2-s)/FLG composites have the advantages of PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC for iron removal without sacrificing the advantages of nano-structure. Therefore, (SnS -- Sns2-s)/FLG has high capacity, high rate and long life weight and volume storage.
(SnS -- SnS2-s)/FLG as anode and LiFePO4 as cathode were assembled to explore the possibility of practical applications. Delivers a highly reversible capacity of 690mAh·g-1 and an output voltage of 1.7V at 0.5A·g-1, with a high ICE of 68.5%. By connecting the full battery, the "SCUT" shaped LED panel can be lit. In this case, the incorporation of Li2S can act as a grain growth inhibitor, preventing the aggregation of active particles. On the other hand, the FLG bracket provides an external limitation, and the PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC further maintains the structural stability of the electrode.
A simple and scalable PTMS LITHIUM COBALT ACID MATERIAL MAGNETIC method has been used to fabricate micro-nano structure (SnS2-S)/FLG composites with high solid density. Interface control lithium/delithium, which benefits from a high proportion of SnS/SnS2/S interfaces, can greatly improve electrode performance at high rates.
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