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Enhancing cycling durability of Li-ion batteries with hierarchical structured silicon–graphene hybrid anodes

机译:使用分层结构的硅-石墨烯混合阳极提高锂离子电池的循环耐久性

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摘要

Hybrid anode materials consisting of micro-sized silicon (Si) particles interconnected with few-layer graphene (FLG) nanoplatelets and sodium-neutralized poly(acrylic acid) as a binder were evaluated for Li-ion batteries. The hybrid film has demonstrated a reversible discharge capacity of ∼1800 mA h g−1 with a capacity retention of 97% after 200 cycles. The superior electrochemical properties of the hybrid anodes are attributed to a durable, hierarchical conductive network formed between Si particles and the multi-scale carbon additives, with enhanced cohesion by the functional polymer binder. Furthermore, improved solid electrolyte interphase (SEI) stability is achieved from the electrolyte additives, due to the formation of a kinetically stable film on the surface of the Si.udud
机译:对于锂离子电池,评估了混合阳极材料,该材料由与几层石墨烯(FLG)纳米片互连的微细硅(Si)颗粒和钠中和的聚丙烯酸作为粘合剂组成。该杂化膜在200个循环后显示出约1800 mA h g-1的可逆放电容量,容量保持率达97%。杂化阳极的优异电化学性能归因于在Si颗粒与多尺度碳添加剂之间形成的持久,分层的导电网络,并通过功能性聚合物粘合剂增强了内聚力。此外,由于在Si的表面上形成了动力学稳定的薄膜,因此从电解质添加剂中可以获得更高的固体电解质相间(SEI)稳定性。

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