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Highly Monodispersed Tin Oxide/Mesoporous Starbust Carbon Composite as High-Performance Li-Ion Battery Anode

机译:高性能锂离子电池阳极的高单分散氧化锡/中孔星空碳复合材料

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The widespread commercialization of today's plug-in hybrid and all electric vehicles will rely on improved lithium batteries with higher energy density, greater power, and durability.To take advantage of the high density of SnO2 anodes for Li ion batteries, we achieved a smart design of monodispersed SnO2/MSCS composite with very high content of SnO2 by a simple infiltration procedure. The synergistic effects of the unique nanoarchitecture of MSCS and the ultrafine size of SnO2 nanoparticle endowed the composite with superior electrochemical performance. Because of the high density of the composite resulting from its monodispersed submicrometer spherical morphology, an exceptionally high reversible lithium storage capacity (both gravimetric and volumetric), very close to the theoretical capacity (1491 raA h/g), can be achieved with good cyclability (capacity retention of 92.5% after 15 cycles). The SnO2/MSCS composite anode exhibited a high reversible average capacity of about 1200 mAh/g over 30 cycles at a current of 80 mAh/g, which corresponds to about 1440 mAh/cm~3 (practical volumetric capacity). In addition, a Coulombic efficiency close to 100% was achieved, and less than 25% first irreversible capacity loss was observed.
机译:当今的插电式混合动力汽车和所有电动汽车的广泛商业化将依赖于具有更高能量密度,更大功率和耐用性的改进锂电池。为了利用锂离子电池的高密度SnO2阳极,我们实现了智能设计通过简单的渗透程序制备具有非常高的SnO2含量的单分散SnO2 / MSCS复合材料。 MSCS独特的纳米结构和超细的SnO2纳米颗粒的协同作用赋予复合材料优异的电化学性能。由于其单分散的亚微米球形形态所形成的复合材料的高密度,可以实现非常高的可逆锂存储容量(重量和体积),非常接近理论容量(1491 raA h / g),并且具有良好的循环性(15个循环后,容量保留率为92.5%)。 SnO2 / MSCS复合阳极在80 mAh / g的电流下在30个循环中表现出约1200 mAh / g的高可逆平均容量,相当于约1440 mAh / cm〜3(实际体积容量)。此外,库仑效率接近100%,首次不可逆容量损失低于25%。

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