ChemElectroChem · 2018 · 30 citations · 40 references
Materials ScienceLithium‐ion BatteriesEngineeringBattery Electrode MaterialsLi-ion Battery MaterialsNanomaterialsOne‐step FabricationSncl 2Active SitesSn 4Advanced Electrode MaterialEnergy StorageElectrochemical Energy StorageBatteriesChemistryAnode MaterialsCarbon NanotubesElectrochemistry
Abstract Through a one‐step solvothermal approach, the carbon nanotubes‐decorated Sn 4 P 3 nanohybrid with intertwined scaffold structure and enhanced electroconductivity is successfully composed as anode material in lithium‐ion batteries, using nontoxic red phosphorus and SnCl 2 as starting materials. The special architecture of the nanohybrid exhibits more active sites for lithium ions and buffers the huge volume expansion. When used as anodes in lithium‐ion batteries, the material shows superior electrochemical properties, 976.5 mAh g −1 after 300 cycles under a constant current density of 500 mA g −1 and 480.0 mAh g −1 even at a high rate current of 2000 mA g −1 . This excellent electrochemical behavior can be attributed to the 3D network of CNTs and its critical synergic effect with Sn 4 P 3 .
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