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用于超级电容器应用的具有原位包裹金属钴的三维多孔碳质网络。

Three-dimensional porous carbonaceous network with in-situ entrapped metallic cobalt for supercapacitor application.

作者信息

Tiwari Arjun Prasad, Chae Su-Hyeong, Ojha Gunendra Prasad, Dahal Bipeen, Mukhiya Tanka, Lee Minju, Chhetri Kisan, Kim Taewoo, Kim Hak-Yong

机构信息

Carbon Nano Convergence Technology Center for Next Generation Engineers (CNN), Chonbuk National University, Jeonju-si, Jeollabuk-do 54896, Republic of Korea; Department of BIN Convergence Technology, Chonbuk National University, Jeonju 561-756, Republic of Korea.

Department of BIN Convergence Technology, Chonbuk National University, Jeonju 561-756, Republic of Korea.

出版信息

J Colloid Interface Sci. 2019 Oct 1;553:622-630. doi: 10.1016/j.jcis.2019.06.070. Epub 2019 Jun 21.

DOI:10.1016/j.jcis.2019.06.070
PMID:31247501
Abstract

Herein, we outline the fabrication of highly porous three-dimensional carbon-fiber network anchored with uniform metallic cobalt (Co) via electrospinning and subsequent post-modification approaches. First, cobalt acetate solution saturated electrospun polyacrylonitrile (PAN) nanofibrous mat was subjected to sodium borohydride (NaBH) solution which results in the fabrication of three dimensional (3D) hierarchical multilayer network. Restructuring of the 2D mat into multilayered sponges with metal particles entrapment is attributed to the in-situ generated hydrogen gas into the interconnected pores of the fibrous network simultaneous with reduction of cobalt salt into metallic cobalt by NaBH. The resulting mesh was stabilized and carbonization at inert atmosphere to obtain metallic cobalt (Co) embedded 3D carbon nanofibrous networks (Co@3D-CNFs). Physicochemical characterization and electrochemical analysis were performed. Results show carbon network was found to be expanded with bubbling like structures often embedded metallic Co nanoparticles. X-ray diffraction (XRD) pattern confirms the existence of the metallic cobalt particles on the carbon fiber networks. Furthermore, we establish a resulting composite (Co@3D-CNFs) identify the enhanced electrochemical performance having specific capacitance 762 F g compared to 173 and 180 F g for corresponding @3D-CNFs and 2D carbon nanofiber network with cobalt doped (Co@2D-CNFs) counterparts, respectively. The assembled Co2@3D-CNFs//NGH ASC device exhibits a high energy density 24.6 W h Kg at 797 W kg power density with an operating voltage of 1.6 V (vs Ag/AgCl). The device further shows good capacitance retention (90.1%) after 5000 cycles. This research shows the simple and cost-effective strategy to make metallic particles embedded 3D porous carbonaceous electrode materials which can have great potential for energy storage application.

摘要

在此,我们概述了通过静电纺丝和后续的后处理方法制备高度多孔的三维碳纤维网络,并在其上均匀锚定金属钴(Co)的过程。首先,将醋酸钴溶液饱和的静电纺聚丙烯腈(PAN)纳米纤维毡置于硼氢化钠(NaBH)溶液中,从而制备出三维(3D)分级多层网络。二维毡重构为具有金属颗粒截留的多层海绵,这归因于原位产生的氢气进入纤维网络的相互连通的孔隙,同时NaBH将钴盐还原为金属钴。所得的网在惰性气氛中进行稳定化和碳化处理,以获得嵌入金属钴(Co)的3D碳纳米纤维网络(Co@3D-CNFs)。进行了物理化学表征和电化学分析。结果表明,发现碳网络呈气泡状结构扩展,其中常嵌入金属Co纳米颗粒。X射线衍射(XRD)图谱证实了碳纤维网络上存在金属钴颗粒。此外,我们制备的复合材料(Co@3D-CNFs)具有增强的电化学性能,其比电容为762 F g,而相应的@3D-CNFs和钴掺杂的二维碳纳米纤维网络(Co@2D-CNFs)的比电容分别为173和180 F g。组装的Co₂@‌3D-CNFs//NGH不对称超级电容器(ASC)器件在功率密度为797 W kg时具有24.6 W h Kg的高能量密度,工作电压为1.6 V(相对于Ag/AgCl)。该器件在5000次循环后还显示出良好的电容保持率(90.1%)。这项研究展示了一种简单且经济高效的策略,可制备嵌入金属颗粒的3D多孔碳质电极材料,其在储能应用中具有巨大潜力。

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