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Pechini process-derived tin oxide and tin oxide―graphite composites for lithium-ion batteries

机译:Pechini工艺衍生的用于锂离子电池的氧化锡和氧化锡-石墨复合材料

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摘要

The Pechini process [Ceram. Bull. 68 (1989) 1002] is used to obtain fine tin oxide powders that reduce the specific volume change in Li~+ insertion and extraction reactions. The suitability of these tin oxides as active materials for negative electrodes in lithium-ion batteries is investigated. From elemental analysis, it is found that the templating polymer network is almost completely obliterated after heating at 500℃. The best tin oxide does not exhibit extensive crystallization of tin atoms even after 30 cycles of alloying and de-alloying reactions with Li. The structure and the specific capacity of the oxides are dependent on the heat treatment and remnants of the polymeric C―H network can impose an unfavorable outcome. A capacity of 600 mAh g~(-1), which is unchanged for 30 cycles, can be obtained from tin oxide heat treated at 1000℃. Composites of graphite and SnO_2 are also prepared and exhibit synergistic interactions between graphite and tin oxide which are similar to those reported previously [Electrochem. Solid State Lett. 3 (2000) 167].
机译:Pechini过程[Ceram。公牛。 68(1989)1002]用于获得细的氧化锡粉末,其减少了Li +插入和萃取反应中的比容变化。研究了这些氧化锡作为锂离子电池负极的活性材料的适用性。通过元素分析发现,在500℃加热后,模板聚合物网络几乎完全消失。最好的氧化锡即使经过30次与Li的合金化和脱合金反应,也不会表现出锡原子的广泛结晶。氧化物的结构和比容量取决于热处理,聚合物CH网络的残留物可能会带来不利的结果。通过在1000℃下热处理的氧化锡可以获得600 mAh g〜(-1)的容量,该容量在30个循环中保持不变。还制备了石墨和SnO_2的复合物,并表现出石墨和氧化锡之间的协同作用,这与先前报道的相似。固态lett。 3(2000)167]。

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