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Facile synthesis of metal oxide/reduced graphene oxide hybrids with high lithium storage capacity and stable cyclability

机译:简单的合成金属氧化物/石墨烯氧化物混合动力车高锂存储容量和稳定cyclability

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摘要

We report an environment-friendly approach to synthesize transition metal oxide nanoparticles (NPs)/ reduced graphene oxide (rGO) sheets hybrids by combining the reduction of graphene oxide (GO) with the growth of metal oxide NPs in one step. Either Fe2O3 or CoO NPs were grown onto rGO sheets in ethanol solution through a solvothermal process, during which GOs were reduced to rGO without the addition of any strong reducing agent, e.g. hydrazine, or requiring any post-high-temperature annealing process. The GO or rGO during the precipitation of metal oxide NPs may act as heterogeneous nucleation seeds to facilitate the formation of small crystal grains. This may allow more efficient diffusion of Li ions and lead to high specific capacities. These metal oxide NPs-rGO hybrids were used as anodes for Li-ion batteries, which showed high capacities and excellent charge-discharge cycling stability in the voltage window between 0.01 and 3.0 V. For example, Fe2O3 NPs/rGO hybrids showed specific capacity of 881 mA h g~(-1) in the 90th cycle at a discharge current density of 302 mA g~(-1) (0.3 C), while CoO NPs/rGO hybrids showed a lower capacity of 600 mA h g~(-1) in the 90th cycle at a discharge current density of 215 mA g~(-1) (0.3 C). These nanohybrids also show excellent capacities at high C rate currents, e.g. 611 mA h g~(-1) for Fe2O3/rGO sample in the 300th cycle at 2014 mA g~(-1) (2 C). Such synthesis technique can be a promising route to produce advanced electrode materials for Li-ion batteries.
机译:我们报告一个环保的方法合成过渡金属氧化物纳米粒子(NPs) /降低石墨烯氧化物(rGO)表混合动力车结合石墨烯的还原氧化物与金属氧化物的生长NPs(去)一个步骤。rGO负债表乙醇溶液中通过solvothermal过程,在此期间,神仙减少到没有添加任何强烈rGO还原剂,如肼或需要任何post-high-temperature退火过程。或者在金属氧化物的降水rGONPs可以作为异相成核种子促进小晶体颗粒的形成。这可能允许更有效的扩散离子,导致高的特定能力。金属氧化物NPs-rGO混合动力车作为阳极锂离子电池,显示高能力和优良的充放电循环稳定的电压窗口和0.01之间3.0 V。特定容量881毫安h g ~ 90 (1)周期的放电电流密度302 mAg ~(1)(0.3摄氏度),而首席运营官NPs / rGO混合动力车低容量600毫安h g ~ 90 (1)周期的放电电流密度215 mAg ~ (1) (0.3 C)。这些nanohybrids也显示在C率高电流的优秀能力,例如611 mA h g ~ (1) Fe2O3 / rGO样本马300周期在2014 g ~ (1) (2 C)。合成技术可以是一个有希望的途径生产先进的锂离子电极材料电池。

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