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首页> 外文期刊>Diamond and Related Materials >Ultrafine SnO 2 coated by wheat straw-derived carbon used as anode for high -performance lithium ion batteries
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Ultrafine SnO 2 coated by wheat straw-derived carbon used as anode for high -performance lithium ion batteries

机译:用麦秸秆衍生碳涂覆的超细SnO 2用作高性能锂离子电池的阳极

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摘要

In this research, we separated cellulose from wheat straw by chemical treatment, and then coated it around the ultrafine nano-size SnO2 by a hydrothermal method to form a unique carbon coating. The elastic feature of carbon supports could provide a cushion effect against the volume strain and increase the electrical conductivity of the nanocomposite material. Additionally, two non-metal elements, nitrogen and sulfur have been added to the composite to form chemical bonds with the external amorphous carbon of composite material, which leading to a further improved electrochemical performance. The final synthesized composite material was named SnO2@WSC, when used as an anode for lithium-ion batteries, the specific discharge capacity of SnO2@WSC in the first cycle reached 1750 mA hg? 1. And after 200 cycles, the discharge specific capacity reached 1130 mA hg? 1 and 1100 mA hg? 1 at 0.2C and 1C current respectively, which exhibits superior cycle stability.
机译:在本研究中,我们通过化学处理从麦草中分离纤维素,然后通过水热方法将其包裹在超细纳米SnO2周围,形成独特的碳涂层。碳载体的弹性特性可以提供对体积应变的缓冲效应,并增加纳米复合材料的导电性。此外,在复合材料中添加了氮和硫两种非金属元素,与复合材料的外部非晶碳形成化学键,从而进一步提高了电化学性能。最终合成的复合材料被命名为SnO2@WSC,当用作锂离子电池的阳极时SnO2@WSC在第一个循环中达到1750毫安汞柱?1.经过200次循环后,放电比容量达到1130毫安汞柱?1和1100毫安汞柱?1,分别在0.2C和1C电流下,表现出优越的循环稳定性。

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