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首页> 外文期刊>The Korean journal of chemical engineering >Spherical graphene and Si nanoparticle composite particles for high-performance lithium batteries
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Spherical graphene and Si nanoparticle composite particles for high-performance lithium batteries

机译:高性能锂电池用球形石墨烯和Si纳米颗粒复合颗粒

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Silicon/carbon composite electrodes are in the spotlight as an anode with a high capacity and a long cycle life. For this purpose, it is important to make a uniformly dispersed composite material. We fabricated spherical composite particles of reduced graphene oxide (rGO) and silicon nanoparticle (Si NP) using a spray drying method. The composite microparticle fabricated by drying the suspended droplets forms a well-agglomerated rGO/Si NP composite and forms a pore structure by crumpled rGO. The rGO/Si NP microparticles were applied as the anode of the lithium-ion battery. We achieved a reversible capacity of 1,246 mAh/g at 1A/g after 200 charge/discharge cycles and a capacity retention of 83%. Considering that the Si NP microparticle without rGO showed a capacity of 365 mAh/g and a retention of 12%, the rGO matrix improves the electrical conductivity and effectively alleviates stress during charge and discharge cycles.
机译:硅/碳复合电极作为阳极具有高容量和长循环寿命。为此目的,重要的是制造均匀分散的复合材料。我们使用喷雾干燥法制备了还原型氧化石墨烯(rGO)和硅纳米颗粒(Si NP)的球形复合颗粒。通过干燥悬浮液滴而制成的复合微粒形成良好聚集的rGO / Si NP复合物,并通过皱折的rGO形成孔结构。 rGO / Si NP微粒被用作锂离子电池的阳极。经过200次充电/放电循环后,在1A / g时可逆容量为1,246 mAh / g,容量保持率为83%。考虑到没有rGO的Si NP微粒显示出365 mAh / g的容量和12%的保留率,rGO基质提高了电导率并有效地减轻了充电和放电循环中的应力。

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