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Flexible Quasi-Solid-State Sodium-Ion Capacitors Developed Using 2D Metal–Organic-Framework Array as Reactor

机译:使用二维金属有机框架阵列作为反应堆开发的灵活的准固态钠离子电容器

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摘要

Achieving high-performance Na-ion capacitors (NICs) has the particular challenge of matching both capacity and kinetics between the anode and cathode. Here a high-power NIC full device constructed from 2D metal-organic framework (MOFs) array is reported as the reactive template. The MOF array is converted to N-doped mesoporous carbon nanosheets (mp-CNSs), which are then uniformly encapsulated with VO2 and Na3V2(PO4)(3) (NVP) nanoparticles as the electroactive materials. By this method, the high-power performance of the battery materials is enabled to be enhanced significantly. It is discovered that such hybrid NVP@mp-CNSs array can render ultrahigh rate capability (up to 200 C, equivalent to discharge within 18 s) and superior cycle performance, which outperforms all NVP-based Na-ion battery cathodes reported so far. A quasi-solid-state flexible NIC based on the NVP@mp-CNSs cathode and the VO2@mp-CNSs anode is further assembled. This hybrid NIC device delivers both high energy density and power density as well as a good cycle stability (78% retention after 2000 cycles at 1 A g(-1)). The results demonstrate the powerfulness of MOF arrays as the reactor for fabricating electrode materials.
机译:实现高性能的钠离子电容器(NIC)具有使阳极和阴极之间的容量和动力学匹配的特殊挑战。此处报告了一种由2D金属有机框架(MOF)阵列构成的高功率NIC完整设备,作为反应模板。将MOF阵列转换为N掺杂的介孔碳纳米片(mp-CNS),然后将其与VO2和Na3V2(PO4)(3)(NVP)纳米粒子作为电活性材料均匀地封装在一起。通过这种方法,能够显着提高电池材料的高功率性能。发现这种混合NVP @ mp-CNSs阵列可以提供超高倍率能力(高达200 C,相当于18 s内的放电)和出色的循环性能,其性能优于迄今为止报道的所有基于NVP的Na离子电池阴极。基于NVP @ mp-CNSs阴极和VO2 @ mp-CNSs阳极的准固态柔性NIC被进一步组装。这种混合NIC设备既具有高能量密度和功率密度,又具有良好的循环稳定性(在1 A g(-1)下经过2000次循环后,保留率达78%)。结果证明了MOF阵列作为制造电极材料的反应器的强大功能。

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