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Reprocessable squeezing electrode fabrication of olive-like Fe/Co/O nanoparticle@three dimensional nitrogen-doped reduced graphene oxides for high performance lithium batteries

机译:Reprocessable挤压电极制造的olive-like Fe /公司/ O nanoparticle@three维nitrogen-doped降低石墨烯氧化物对高锂电池性能

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摘要

A one step in situ synthesis approach is developed to construct 3D nitrogen-doped reduced graphene oxides, in which olive-like multi-component metal oxides are homogeneously dispersed. The novel hybrid nanoarchitecture shows some particular properties derived from synergistic effects. The size of Fe/Co/O oxides is reduced and better controlled compared to that of individual oxides due to mutual dispersant interactions. Furthermore, the positive synergistic interaction between heterogeneous oxides and graphene nanosheets has effective control on the particle size and dispersion of nanoparticles. Taking advantage of the flexibility and the cohesiveness of graphene nanosheets, the obtained composite can be directly processed into a binder-free electrode through a unique time-saving "squeezing" process. The obtained electrode possesses a reprocessable feature, which provides possibilities for convenient storage and quick fabrication at any time and presents attractive electrochemical performance of robust long-term capability retention (562 mA h g(-1) after 300 cycles at 10 A g(-1)) and superior rate performances (1162 mA h g(-1) at 0.5 A g(-1), 737 mA h g(-1) at 5 A g(-1), and 585 mA h g(-1) at 10 A g(-1)).
机译:原位一步合成方法构建3 d nitrogen-doped降低石墨烯氧化物,olive-like多组分的金属氧化物均匀分散。混合nanoarchitecture显示了一些特定的属性源自协同效应。大小的铁/公司/ O氧化物减少,更好控制相比,个人的氧化物由于相互分散剂交互。此外,积极的协同互动异构氧化物和石墨烯之间nanosheets已经有效控制粒子大小和分散的纳米粒子。优势的灵活性和凝聚力石墨烯nanosheets,获得的复合可以直接加工成binder-free吗电极通过一个独特的节省时间的“挤压”的过程。拥有一个reprocessable特性,它提供了可能方便存储和快速制造任何时候和礼物有吸引力电化学性能强劲的长期马能力保留(562 h g(1) 300年之后周期在10 g(1))和优越的速度马表演(1162 h g(1)为0.5 g (1), 737马h g(1)在5 g(1),马和585 h g (1) 10g(1))。

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