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Edge-Nitrogen-Rich Carbon Dots Pillared Graphene Blocks with Ultrahigh Volumetric/Gravimetric Capacities and Ultralong Life for Sodium-Ion Storage

机译:边缘富氮碳点柱状石墨烯块,具有超高体积/重量容量和超长寿命,用于钠离子储存

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摘要

The development of stable electrode materials for sodium-ion batteries (NIBs) with excellent rate capacity, high volumetric/gravimetric capacity, and ultralong-term cycling stability still remains a challenge. Herein, a novel strategy for the synthesis of edge-nitrogen-rich carbon dots pillared graphene blocks (N-CDGB) through self-polymerization of aniline into graphene oxide blocks, and subsequent carbonization is developed. Due to high bulk density (1.5 g cm(-3)) and integrated lamellar structure with large edge-interlayer spacing (4.2 angstrom) pillared by nitrogen-doped carbon dots (95 edge-nitrogen content), the dense N-CDGB shows robust structural stability, fast ion/electron transfer pathways, and more active sites for sodium storage. As a result, the N-CDGB electrode exhibits ultrahigh reversible volumetric and gravimetric capacities (780 mAh cm(-3)/520 mAh g(-1) at 0.02 A g(-1)) far exceeding those of graphene (108 mAh cm(-3)/290 mAh g(-1)) and hard carbon (297 mAh cm(-3)/311 mAh g(-1)), excellent rate capability (118 mAh g(-1)/177 mAh cm(-3) at 10 A g(-1)), and superior cycling stability up to 10 000 cycles with almost no capacity loss at 10 A g(-1). This work signifies the superiority of densely pillared structure in the future development of NIBs with high volumetric/gravimetric capacity and ultralong-term cycling stability.
机译:开发具有优异倍率容量、高体积/重量容量和超长期循环稳定性的钠离子电池(NIBs)稳定电极材料仍然是一个挑战。在此,开发了一种通过苯胺自聚合成氧化石墨烯嵌段合成边缘富碳点柱状石墨烯嵌段(N-CDGB)并随后碳化的新策略。由于高堆积密度(1.5 g cm(-3))和由氮掺杂碳点(95%边缘氮含量)支撑的具有大边缘层间距(4.2埃)的集成层状结构,致密的N-CDGB表现出强大的结构稳定性,快速的离子/电子转移途径和更多的钠储存活性位点。因此,N-CDGB电极表现出超高的可逆体积和重量容量(0.02 A g(-1)时为780 mAh cm(-3)/520 mAh g(-1)),远远超过石墨烯(108 mAh cm(-3)/290 mAh g(-1))和硬碳(297 mAh cm(-3)/311 mAh g(-1)),出色的倍率能力(10 A g(-1)时为118 mAh g(-1)/177 mAh cm(-3)), 以及高达 10 000 次循环的卓越循环稳定性,在 10 A g(-1) 时几乎没有容量损失。这项工作标志着密柱结构在未来发展中具有高体积/重量容量和超长期循环稳定性的NIB的优越性。

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