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Free-anchored Nb2O5@graphene networks for ultrafast-stable lithium storage

机译:自由锚定的NB2O5 @ Graphene网络,用于超快稳定锂储存

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Orthorhombic Nb2O5 (T-Nb2O5) has structural merit but poor electrical conductivity, limiting their applications in energy storage. Although graphene is frequently adopted to effectively improve its electrochemical properties, the ordinary modified methods cannot meet the growing demands for high-performance. Here, we demonstrate that different graphene modified routes play a vital role in affecting the electrochemical performances of T-Nb2O5. By only manual shaking within one minute, Nb2O5 nano-particles can be rapidly adsorbed onto graphene, then the free-anchored T-Nb2O5@graphene three-dimensional networks can be successfully prepared based on hydrogel method. As for the application in lithium-ion batteries, it performs outstanding rate character (129 mA h g(-1) (25C rate), 110 mA h g(-1) (50C rate) and 90 mA h g(-1) (100C rate), correspond to 79%, 67% and 55% capacity of 0.5C rate, respectively) and excellent long-term cycling feature (similar to 70% capacity retention after 20000 cycles). Moreover, it still maintains similar ultrafast-stable lithium storage performances when Cu foil is substituted by Al foil as current collector. In addition, relevant kinetics mechanisms are also expounded. This work provides a versatile strategy for the preparation of graphene modified Nb2O5 or other types of nanoparticles.
机译:正晶间Nb2O5(T-Nb2O5)具有结构优点但导电性差,限制了它们在储能中的应用。尽管经常采用石墨烯有效改善其电化学性能,但普通的改性方法不能满足对高性能不断增长的需求。在这里,我们证明了不同的石墨烯改性途径在影响T-NB2O5的电化学性能方面发挥着至关重要的作用。仅通过在一分钟内进行手动摇动,可以将Nb 2 O 5纳米颗粒快速吸附到石墨烯上,然后可以基于水凝胶法成功地制备自由锚定的T-NB2O5 @石墨烯三维网络。至于在锂离子电池中的应用,它表现出突出的速率特征(129 mA Hg(-1)(25c速率),110 mA Hg(-1)(50c速率)和90 ma hg(-1)(100c速率),分别对应于79%,67%和55%的容量0.5c速率,优异的长期循环特征(类似于20000年循环后的70%容量保留)。此外,当Cu箔被Al箔作为集电器被Al箔代替时,它仍然保持相似的超快稳定锂储存性能。此外,相关动力学机制也被阐述。该工作为制备石墨烯改性的Nb2O5或其他类型的纳米颗粒提供了多功能策略。

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