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首页> 外文期刊>Advanced Science >MoS 2 ‐Coupled Carbon Nanosheets Encapsulated on Sodium Titanate Nanowires as Super‐Durable Anode Material for Sodium‐Ion Batteries
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MoS 2 ‐Coupled Carbon Nanosheets Encapsulated on Sodium Titanate Nanowires as Super‐Durable Anode Material for Sodium‐Ion Batteries

机译:MoS 2耦合碳纳米片封装在钛酸钠纳米线上,作为钠离子电池的超耐用阳极材料

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There is an ever‐increasing demand for rechargeable batteries with fast charging, long cycling, high safety, and low cost in new energy storage systems. Herein, a heterogeneous architecture composed of MoS 2 ‐coupled carbon nanosheets encapsulated on sodium titanate nanowires is developed and demonstrated as an advanced anode for sodium‐ion batteries (SIBs). Owing to the synergistic effects of ultrastable substrate of 1D sodium titanate (NTO) nanowires, high‐capacity promoter of 2D MoS 2 nanosheets as well as the 2D conductive carbon matrix, the resulting 1D/2D–2D hybrid demonstrates excellent high‐rate capacity and super‐durable cyclability, delivering a stable capacity of up to 425.5 mAh g ?1 at 200 mA g ?1 . Even at an ultrafast charging/discharging process within 80 s, the capacity can be maintained at 201 mAh g ?1 after 16 000 cycles with only 0.0012% capacity loss per cycle, one of the best high‐rate capacities and cyclabilities for NTO‐based hybrid composites. The present work highlights the designing protocol of hierarchical nanoarchitectures with stable substrate and high‐capacity electrodes for next‐generation energy storage applications.
机译:在新储能系统中,对具有快速充电,长循环,高安全性和低成本的可再充电电池的需求不断增长。本文中,开发了一种由封装在钛酸钠纳米线上的,由MoS 2耦合的碳纳米片组成的异质架构,并将其证明为钠离子电池(SIB)的高级阳极。由于1D钛酸钠(NTO)纳米线的超稳定底物,2D MoS 2纳米片的高容量促进剂以及2D导电碳基体的协同作用,因此生成的1D / 2D–2D杂化物表现出出色的高倍率容量和超持久的可循环性,在200 mA g?1时可提供高达425.5 mAh g?1的稳定容量。即使在80 s内的超快充电/放电过程中,在16 000次循环后,容量仍可保持在201 mAh g?1,每个循环仅损失0.0012%,这是基于NTO的最佳高容量和循环能力之一混合复合材料。本工作着重介绍了用于下一代储能应用的具有稳定衬底和高容量电极的分层纳米体系结构的设计协议。

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