研究目的
To resolve the hazard of Li metal anode in lithium-ion oxygen and lithium-ion sulfur batteries by using a free-standing and fibrous Si/C anode prepared by electrospinning and its simple but effective lithiation.
研究成果
The lithiated SieO2 and lithiated SieS cells demonstrate significantly higher cycling stability than LieO2 and LieS cells, respectively, due to the stable LixSi anode and compatibility with carbonate electrolytes. This method promotes the potential applications of Si-air and SieS batteries.
研究不足
The study focuses on the compatibility and performance of Si/C anode in specific electrolytes and does not extensively explore other potential anode materials or electrolyte systems.
1:Experimental Design and Method Selection:
The study involves the preparation of a free-standing Si/C anode by electrospinning and its lithiation by placing it between mass-controlled lithium metal foil and separator, followed by adding electrolytes.
2:Sample Selection and Data Sources:
The samples include nano silicon powder, PAN, and S@pPAN for cathode preparation.
3:List of Experimental Equipment and Materials:
Multi-wall CNT, PVDF, LiTFSI or LiFSI in TEGDME (G4), and PVDF-HFP based gel polymer electrolyte.
4:Experimental Procedures and Operational Workflow:
The Si/C anode is lithiated in situ after cell assembly, and the performance is evaluated in different electrolytes.
5:Data Analysis Methods:
The electrochemical performance is evaluated using a LAND battery test system, and materials are characterized by SEM, TGA, and XRD.
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Nano silicon powder
30e50 nm
HAOXI Research Nanomaterials, Inc.
Used as the anode material in the study
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Multi-wall CNT
Used in the preparation of oxygen cathodes
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PVDF
Used as a binder in the preparation of oxygen cathodes
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LiTFSI
Used in the preparation of liquid electrolytes
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LiFSI
Used in the preparation of liquid electrolytes
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TEGDME (G4)
Used as a solvent in the preparation of liquid electrolytes
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PVDF-HFP
Used in the preparation of gel polymer electrolytes
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Fumed nano SiO2
Used in the preparation of gel polymer electrolytes
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