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Peat-derived hard carbon electrodes with superior capacity for sodium-ion batteries

机译:泥炭衍生的硬碳电极具有卓越的钠离子电池容量

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Herein we demonstrate how peat, abundant and cheap biomass, can be successfully used as a precursor to synthesize peat-derived hard carbons (PDCs), applicable as electrode materials for sodium-ion batteries (SIB). The PDCs were obtained by pre-pyrolysing peat at 300–800 °C, removing impurities with base–acid solution treatment and thereafter post-pyrolysing the materials at temperatures ( T ) from 1000 to 1500 °C. By modification of pre- and post-pyrolysis temperatures we obtained hard carbons with low surface areas, optimal carbonization degree and high electrochemical Na ~(+) storage capacity in SIB half-cells. The best results were obtained when pre-pyrolysing peat at 450 °C, washing out the impurities with KOH and HCl solutions and then post-pyrolysing the obtained carbon-rich material at 1400 °C. All hard carbons were electrochemically characterized in half-cells ( vs. Na/Na ~(+) ) and capacities as high as 350 mA h g ~(?1) at 1.5 V and 250 mA h g ~(?1) in the plateau region ( E < 0.2 V) were achieved at charging current density of 25 mA g ~(?1) with an initial coulombic efficiency of 80%.
机译:在此,我们证明了泥炭,丰富和廉价的生物量,可以成功地用作合成泥炭衍生的硬碳(PDC)的前体,可用作钠离子电池(SIB)的电极材料。通过在300-800℃下预溶物泥炭进行PDC,除去具有碱性酸溶液处理的杂质,然后在温度(T)的温度(T)从1000至1500℃下进行后溶解。通过改变预热和后后水解温度,我们获得了低表面积,最佳碳化度和高电化学Na〜(+)储存能力的硬质碳,在SIB的半细胞中获得了碳。当在450℃下泥炭预热泥炭时获得最佳结果,用KOH和HCl溶液洗涤杂质,然后在1400℃下将所得碳的富含物质后溶解。所有硬碳都是电化学表征的半电池(与Na / Na〜(+))和高达350 mA Hg〜(β1)的容量,在高原地区的1.5 V和250 mA Hg〜(?1) (E <0.2V)以25 mA G〜(α1)的充电电流密度,初始库仑效率为80%。

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