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首页> 外文期刊>ACS applied materials & interfaces >Controllable Self-Assembly of Micro-Nanostructured Si-Embedded Graphite/Graphene Composite Anode for High-Performance Li-Ion Batteries
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Controllable Self-Assembly of Micro-Nanostructured Si-Embedded Graphite/Graphene Composite Anode for High-Performance Li-Ion Batteries

机译:用于高性能锂离子电池的微纳米结构Si嵌入石墨/石墨烯复合阳极的可控自组装

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摘要

Si-containing graphite-based composites are considered as promising high-capacity anodes for lithium-ion batteries (LIBs). Here, a controllable and scalable self-assembly strategy is developed to produce micro-nanostructured graphite/Si/reduced graphene oxides composite (SGG). The self assembly procedure is realized by the hydrogen bond interaction between acylamino-modified graphite and graphene oxides (GO); Si nanoparticles are in situ embedded between graphite and GO sheets uniformly. This architecture is able to overcome the incompatibility between Si nanoparticles and microsized graphite. Accordingly, the as-prepared SGG anode (Si 8 wt %) delivers a reversible Li-storage capacity of 572 mAh g(-1) at 0.2 C, 502.2 mAh g(-1) after 600 cycles at 0.8 C with a retention of 92%, and a capacity retention of 64% even at 10 C. The impressive electrochemical properties are ascribed to the stable architecture and three-dimensional conductive network constructed by graphite and graphene sheets, which can accommodate the huge volume change of Si, keep the conductive contact and structural integrity, and suppress side reactions with electrolyte. Additionally, full-cell (LiFePO4 cathode/SGG anode) delivers a specific capacity of 550 mAh g(-1) with a working potential beyond 3.0 V.
机译:含Si的石墨基复合材料被认为是锂离子电池(LIBS)的高容量阳极。这里,开发了可控和可伸缩的自组装策略以产生微纳米结构石墨/ Si / Si / Si / Xi氧化物复合材料(SGG)。通过酰基氨基改性的石墨和石墨烯氧化物(GO)之间的氢键相互作用来实现自组装过程; Si纳米颗粒原位嵌入石墨和均匀板之间。这种体系结构能够克服Si纳米粒子和微晶石墨之间的不相容性。因此,在0.8℃的600次循环后,在0.2c,502.2mahg(-1)下,在0.2c循环的情况下,在0.2c的情况下,制备的Sig的Sgg阳极(si 8wt%)在0.2c次循环后递送即使在10℃下,令人印象深刻的电化学性能也适用于稳定的架构和石墨烯片构造的稳定建筑和三维导电网络,令人令人印象深刻的电化学性能,可以容纳稳定的架构和三维导电网络,这可以适应Si的巨大变化,保持导电接触和结构完整性,并抑制与电解质的副反应。此外,全单元(LiFepo4阴极/ SGO onode)可提供550 MAH G(-1)的特定容量,其电位超过3.0 V.

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