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首页> 外文期刊>Nanoscale >MoP hollow nanospheres encapsulated in 3D reduced graphene oxide networks as high rate and ultralong cycle performance anodes for sodium-ion batteries
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MoP hollow nanospheres encapsulated in 3D reduced graphene oxide networks as high rate and ultralong cycle performance anodes for sodium-ion batteries

机译:拖把空心团簇封装在3 d降低高速率和氧化石墨烯网络超长的循环性能为钠-阳极电池

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摘要

Molybdenum phosphide (MoP), regarded as a promising anode material for sodium-ion batteries due to its superior conductivity and high theoretical specific capacity, still suffers from rapid capacity decay because of a large volume change and weak diffusion kinetics. Hollow nano-structures will be an effective solution to alleviate structural strain and improve cycling stability. Yet the preparation of MoP needs a high temperature phosphorization procedure which would cause agglomeration and structure collapse, making it difficult to achieve hollow nano-structures. Herein, caged by 3D graphene networks, MoP hollow nanospheres encapsulated in 3D reduced graphene oxide networks (H-MoP@rGO) were prepared successfully, and benefiting from the merits of the hollow nano-structure and flexibility of rGO, H-MoP@rGO demonstrates a superior cycle performance of 353.8 mA h g(-1) at 1 A g(-1) after 600 cycles and an extraordinary rate performance of 183.4 mA h g(-1) at an ultrahigh current density of 10 A g(-1) even after 3000 cycles.
机译:磷化钼(拖把),视为一个有前途的钠电池阳极材料由于其优越的导电率和高理论比容量,仍然遭受因为大量容量快速衰减变化和弱扩散动力学。纳米结构将是一个有效的解决方案减轻结构应变和改善循环稳定。高温磷化作用过程会导致结块和结构崩溃,很难实现空心纳米结构。团簇封装在网络,拖把空洞3 d降低石墨烯氧化物网络(H-MoP@rGO)成功的准备,受益于空心纳米结构的优点的灵活性rGO, H-MoP@rGO演示了一个优良的循环性能353.8 mA h g (1)1 g(1) 600年以后周期和一个非凡的率的性能183.4 mA h g(1)在一个超高的电流密度10 g (1)3000年之后周期。

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