首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >A novel eutectic solvent precursor for efficiently preparing N-doped hierarchically porous carbon nanosheets with unique surface functional groups and micropores towards dual-carbon lithium-ion capacitors
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A novel eutectic solvent precursor for efficiently preparing N-doped hierarchically porous carbon nanosheets with unique surface functional groups and micropores towards dual-carbon lithium-ion capacitors

机译:一种新的共晶溶剂前体,用于有效地制备具有独特表面官能团和微孔朝向双碳锂离子电容器的N-掺杂的分层多孔碳纳米片

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摘要

High performance carbon-based materials are ideal electrode materials for Li-ion capacitors (LICs) but there are still many challenges such as the complicated preparation processes, high cost, and low yield. Also, the intrinsic structure and surface functionalities need to be optimized. This paper designs a novel route for the facile, low cost, and high efficiency fabrication of N-doped hierarchically porous carbon nanosheets (NPCSs). The NPCSs are achieved from the direct pyrolysis of a homogeneous low temperature eutectic solvent containing sugar as the carbon source and a eutectic salt with ferric chloride as the activation agent and the nitrogen source. It is indicated that the application of moderate ferric chloride additive during the activation process plays key roles, which not only facilitates the formation of a highly distributed layered structure but also optimizes the proportion of the micropores and surface functional groups of the final NPCSs. Specifically, the as-obtained NPCS-1 sample, with appropriate proportion of N- and O-containing surface groups as well as micropores, exhibits an excellent electrochemical performance as both cathode and anode materials for an LIC, with specific discharge capacities of similar to 62.1 and 331 mA h g(-1) at a current density of 5 A g(-1), respectively. Furthermore, the resultant NPCS-1//NPCS-1 LIC device can deliver a high energy density of 135.6 W h kg(-1) at 500 W kg(-1), with a capacity retention of 82% after 10 000 cycles at 2 A g(-1).
机译:高性能碳基材料是理想的锂离子电容器电极材料,但其制备工艺复杂、成本高、产率低。此外,内部结构和表面功能也需要优化。本文设计了一种简便、低成本、高效率制备氮掺杂分级多孔碳纳米片的新方法。NPCSs是由以糖为碳源的均质低温共晶溶剂和以三氯化铁为活化剂和氮源的共晶盐直接热解而成。结果表明,在活化过程中添加适量氯化铁添加剂起着关键作用,这不仅有利于形成高度分布的层状结构,而且优化了最终NPCSs的微孔和表面官能团的比例。具体而言,所获得的NPCS-1样品具有适当比例的含氮和含氧表面基团以及微孔,作为LIC的阴极和阳极材料,显示出优异的电化学性能,在5 a g(-1)的电流密度下,比放电容量分别为62.1和331 mA h g(-1)。此外,由此产生的NPCS-1//NPCS-1 LIC装置在500 W kg(-1)下可提供135.6 W h kg(-1)的高能量密度,在2 a g(-1)下进行10000次循环后,容量保持率为82%。

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