首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Stable and Efficient Li-Ion Battery Anodes Prepared from Polymer-Derived Silicon Oxycarbide-Carbon Nanotube Shell/Core Composites
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Stable and Efficient Li-Ion Battery Anodes Prepared from Polymer-Derived Silicon Oxycarbide-Carbon Nanotube Shell/Core Composites

机译:由聚合物衍生的碳氧化硅-碳纳米管壳/芯复合材料制备的稳定高效的锂离子电池阳极

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摘要

We demonstrate the synthesis and electrochemical performance of polymer-derived silicon oxycarbide—carbon nanotube (SiOC—CNT) composites as a stable lithium intercalation material for secondary battery applications. Composite synthesis was achieved through controlled thermal decomposition of 1,3,5,7-tetramethyl 1,3,5,7-tetravinyl cyclotetrasiloxane (TTCS) precursor oh carbon nanotubes surfaces that resulted in formation of shell/core type ceramic SiOC—CNT architecture. Li-ion battery anode (prepared at a loading of ~ 1.0 mg cm~(-2)) showed stable charge capacity of 686 mA h g~(-1) even after 40 cycles. The average Coulombic efficiency (excluding the first cycle loss) was 99.6%. Further, the post electrochemical imaging of the dissembled cells showed no apparent damage to the anode surface, highlighting improved chemical and mechanical stability of these composites. A similar trend was observed in the rate capability tests, where the SiOC—CNT anode (with 5 wt % loading in TTCS) again showed stable performance, completely recovering the first cycle capacity of ~750 mA h g~(-1) when the current density was brought back to 50 mA g~' after cycling at higher current densities.
机译:我们证明了作为二次电池应用中稳定的锂嵌入材料的聚合物衍生的碳氧化硅-碳纳米管(SiOC-CNT)复合材料的合成和电化学性能。通过受控的热分解碳纳米管表面的1,3,5,7-四甲基1,3,5,7-四乙烯基环四硅氧烷(TTCS)前驱体实现复合合成,这导致形成壳/芯型陶瓷SiOC-CNT结构。锂离子电池阳极(在〜1.0 mg cm〜(-2)的负载下制备)即使在40个循环后仍显示出686 mA h g〜(-1)的稳定充电容量。平均库仑效率(不包括第一个循环损失)为99.6%。此外,分解后的电池的电化学后成像未显示出对阳极表面的明显损害,从而突出了这些复合材料的化学和机械稳定性。在速率能力测试中观察到了类似的趋势,其中SiOC-CNT阳极(TTCS中的负载量为5 wt%)再次显示出稳定的性能,当电流流过时,完全恢复了约750 mA hg〜(-1)的第一循环容量。在较高电流密度下循环后,密度恢复到50 mA g'。

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