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氮掺杂纳米片修饰的液化木材衍生中空碳球用于超级电容器。

NiS Nanosheets Decorated on Hollow Carbon Spheres from Liquefied Wood for Supercapacitors.

机构信息

College of Light Industry Science and Engineering, Tianjin University of Science and Technology, Tianjin 300222, China.

出版信息

Langmuir. 2023 May 16;39(19):6924-6931. doi: 10.1021/acs.langmuir.3c00627. Epub 2023 May 2.

Abstract

Carbon-based supercapacitors with high performance have a wide foreground among various energy storage devices. In this work, wood-based hollow carbon spheres (WHCS) were prepared from liquefied wood through the processes of emulsification, curing, carbonization, and activation. Then, the hydrodeposition method was used to introduce nickel sulfide (NiS) to the surface of the microspheres, obtaining NiS/WHCS as the supercapacitor electrode. The results show that NiS/WHCS microspheres exhibited a core-shell structure and flower-like morphology with a specific surface (307.55 m g) and a large total pore volume (0.14 cm g). Also, the capacitance could be up to 1533.6 F g at a current density of 1 A g. In addition, after 1000 charge/discharge cycles, the specific capacitance remained at 72.8% at the initial current density of 5 A g. Hence, NiS/WHCS with excellent durability and high specific capacitance is a potential candidate for electrode materials.

摘要

具有高性能的碳基超级电容器在各种储能设备中具有广阔的前景。在这项工作中,通过乳化、固化、碳化和活化等过程,从液化木材中制备了基于木材的空心碳球 (WHCS)。然后,采用水热沉积法将硫化镍 (NiS) 引入到微球表面,得到作为超级电容器电极的 NiS/WHCS。结果表明,NiS/WHCS 微球具有核壳结构和花状形态,比表面积 (307.55 m g) 和总孔体积 (0.14 cm g) 较大。此外,在电流密度为 1 A g 时,电容可高达 1533.6 F g。此外,在 1000 次充放电循环后,在 5 A g 的初始电流密度下,比电容仍保持在初始值的 72.8%。因此,具有优异耐久性和高比电容的 NiS/WHCS 是电极材料的潜在候选材料。

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