Publication | Closed Access
Single Nanowire Electrode Electrochemistry of Silicon Anode by in Situ Atomic Force Microscopy: Solid Electrolyte Interphase Growth and Mechanical Properties
118
Citations
39
References
2014
Year
Silicon NanowiresEngineeringElectrode-electrolyte InterfaceSilicon AnodeElectrochemical InterfaceMaterials ScienceElectrical EngineeringNanotechnologySurface ElectrochemistryLithium-ion BatteryEnergy StorageSolid-state BatteryElectrochemistryMechanical PropertiesNanomaterialsMetal AnodeApplied PhysicsElectrochemical Energy StorageBatteriesAnode MaterialsSilicon NanowireBulk Silicon
Silicon nanowires (SiNWs) have attracted great attention as promising anode materials for lithium ion batteries (LIBs) on account of their high capacity and improved cyclability compared with bulk silicon. The interface behavior, especially the solid electrolyte interphase (SEI), plays a significant role in the performance and stability of the electrodes. We report herein an in situ single nanowire atomic force microscopy (AFM) method to investigate the interface electrochemistry of silicon nanowire (SiNW) electrode. The morphology and Young's modulus of the individual SiNW anode surface during the SEI growth were quantitatively tracked. Three distinct stages of the SEI formation on the SiNW anode were observed. On the basis of the potential-dependent morphology and Young's modulus evolution of SEI, a mixture-packing structural model was proposed for the SEI film on SiNW anode.
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