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Epoxidized Natural Rubber/Chitosan Network Binder for Silicon Anode in Lithium-Ion Battery

机译:用于锂离子电池的硅阳极的环氧化天然橡胶/壳聚糖网粘合剂

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摘要

Polymeric binder is extremely important for Si based anode in lithium-ion batteries due to large volume variation during charging/discharging process. Here, natural rubber-incorporated chitosan networks were designed as a binder material to obtain both adhesion and elasticity. Chitosan could strongly anchor Si particles through hydrogen bonding, while the natural rubber could stretch reversibly during the volume variation of Si particles, resulting in high cyclic performance. The prepared electrode exhibited the specific capacities of 1350 mAh/g after 1600 cycles at the current density of 8 A/g and 2310 mAh/g after 500 cycles at the current density of 1 A/g. Furthermore, the cycle test with limiting lithiation capacity was conducted to study the optimal binder properties at varying degree of the volume expansion of silicon, and it was found that the elastic property of binder material was strongly required when the large volume expansion of Si occurred.
机译:由于在充电/放电过程中,聚合物粘合剂对锂离子电池中的Si基阳极非常重要。 这里,天然橡胶掺入的壳聚糖网络设计为粘合剂材料,以获得粘附和弹性。 壳聚糖通过氢键可以强烈地锚固Si颗粒,而天然橡胶可以在Si颗粒的体积变化期间可逆地延伸,导致循环性能高。 在电流密度为8A / g的电流密度为5A / g的500次循环后,制备的电极在1600次循环之后表现出1350mAh / g的特定容量。 此外,进行了限制锂化容量的循环试验,以研究硅的变化程度的最佳粘合剂性能,发现当Si的大量膨胀发生时,强烈需要强烈需要粘合剂材料的弹性性能。

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