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The use of Mixed Organic/Ionic Liquid Electrolytes with Forcespun Metal Oxides/Carbon Microfiber Electrodes in Lithium Ion Batteries

机译:使用混合有机/离子液体电解质与锂离子电池中的金属氧化物/碳微纤维电极的用途

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We present results on the Forcespinning (FS) of Polyacrylonitrile (PAN) solution precursors for the mass production of carbon and SnO_2/Carbon composite fibers as anode materials for Lithium-ion batteries. Mixed organic/ionic liquid electrolytes (MOILEs) were employed in Lithium ion cell cycling studies with the carbon fiber and SnO_2/C composite fiber anodes to investigate the electrochemical and cycling performance of the Li-ion cells. The carbon fibers cycled with 1 M LiTFSI in 60% EMI-TFSI and 40% EC/DMC (1:1 v/v) with 5 wt% SN electrolyte had a specific capacity of ~201 mAhg~(-1) at 100 mAg~(-1) after 100 cycles. Similarly, results were obtained on carbon fibers using 1 M LiPF_6 in EC/DMC (1:1 v/v) electrolyte. The SnO_2/C composite fibers, with 1 M LiTFSI in 60% EMI-TFSI and 40% EC/DMC (1:1 v/v) with 5 wt% SN, delivered a specific capacity of ~298 mAhg~(-1) at 100 mAg~(-1) after 100 cycles.
机译:我们在聚丙烯腈(PAN)溶液前体的FESCESCINNING(FS)上的结果呈现出碳和SNO_2 /碳复合纤维的批量生产作为锂离子电池的阳极材料。将混合的有机/离子液体电解质(Movers)用于锂离子电池循环研究中,碳纤维和SnO_2 / C复合纤维阳极研究,研究锂离子电池的电化学和循环性能。用5wt%Sn电解质在60%EMI-TFSI和40%EC / DMC(1:1 V / V)中用1M LITFSI循环的碳纤维在100mag的情况下具有〜201毫安〜(-1)的特定容量〜(-1)100次循环后。类似地,在EC / DMC(1:1 V / V)电解质中使用1M LiPF_6,在碳纤维上获得结果。 SnO_2 / C复合纤维,60%EMI-TFSI和40%EC / DMC(1:1 V / V)中的1 M LitFSI,具有5wt%Sn,提供了〜298 mahg〜(-1)的特定容量在100次循环后100mar〜(-1)。

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