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通过回收铝箔纸和加热烟草的过滤部件制备高性能非对称超级电容器

Preparation of a High-Performance Asymmetric Supercapacitor by Recycling Aluminum Paper and Filter Components of Heated Tobacco.

作者信息

Kim Ha-Yeong, Jekal Suk, Kim Chan-Gyo, Noh Jungchul, Kim Jiwon, Chu Yeon-Ryong, Otgonbayar Zambaga, Oh Won-Chun, Lee Sang Hun, Yoon Chang-Min

机构信息

Department of Chemical and Biological Engineering, Hanbat National University, Daejeon 34158, Republic of Korea.

McKetta Department of Chemical Engineering and Texas Material Institute, The University of Texas at Austin, Austin, TX 78712, USA.

出版信息

Materials (Basel). 2023 Sep 28;16(19):6454. doi: 10.3390/ma16196454.

Abstract

In this study, Al paper and cellulose acetate (CA) filters derived from heated tobacco waste were successfully converted into current collectors and active materials for a supercapacitor device. Typically, heated tobacco contains electrically discontinuous Al paper. First, Al was extracted from the tobacco waste using HCl to produce Lewis acid (AlCl). This acid was then used in an Al electrodeposition process utilizing the chloroaluminate ionic liquid reaction between the acid and the base (RCl) at room temperature. To enhance the conductivity, a supplementary coating of Al metal was applied to the Al paper through electrodeposition, thus re-establishing the electrical continuity of the discontinuous parts and forming an Al-coated current collector. Moreover, the CA filters were carbonized under a nitrogen atmosphere, yielding carbon precursors (C-CA) for the supercapacitor electrodes. To further enhance the electrochemical performance, nickel oxide (NiO) was incorporated into C-CA, resulting in C-CA@NiO with pseudocapacitance. The specific surface area of CA increased with carbonization and the subsequent incorporation of NiO. The as-synthesized C-CA and C-CA@NiO materials were applied to an Al-coated current collector to obtain C-CA- and C-CA@NiO-based electrodes, exhibiting stable electrochemical behavior in the voltage range of -1.0 to 0 V and 0 to 1.0 V, respectively. An asymmetric supercapacitor (ASC) device was assembled with C-CA@NiO and C-CA as the positive and negative electrodes, respectively. This ASC device demonstrated a high specific capacitance of 40.8 F g, while widening the operating voltage window to 2.0 V. The high electrochemical performance of the device is attributed to the successful Al electrodeposition, which facilitates the electrical conductivity and increased porosity of the C-CA@NiO and C-CA materials. To the best of our knowledge, this is a pioneering study in regards to the conversion of biomass waste into current collectors and active materials to fabricate a practical ASC device. Our findings highlight the potential of reusing Al paper and CA filters from heated tobacco waste as essential components of energy storage devices.

摘要

在本研究中,源自加热烟草废弃物的铝箔纸和醋酸纤维素(CA)过滤器成功转化为超级电容器装置的集流体和活性材料。通常,加热烟草含有电不连续的铝箔纸。首先,使用盐酸从烟草废弃物中提取铝以制备路易斯酸(AlCl)。然后,该酸在室温下用于利用酸与碱(RCl)之间的氯铝酸盐离子液体反应的铝电沉积过程。为了提高导电性,通过电沉积在铝箔纸上施加一层补充的铝金属涂层,从而重新建立不连续部分的电连续性并形成铝涂层集流体。此外,CA过滤器在氮气气氛下碳化,产生用于超级电容器电极的碳前驱体(C-CA)。为了进一步提高电化学性能,将氧化镍(NiO)掺入C-CA中,得到具有赝电容的C-CA@NiO。CA的比表面积随着碳化以及随后NiO的掺入而增加。将合成的C-CA和C-CA@NiO材料应用于铝涂层集流体,以获得基于C-CA和C-CA@NiO的电极,分别在-1.0至0V和0至1.0V的电压范围内表现出稳定的电化学行为。以C-CA@NiO和C-CA分别作为正负极组装了一个不对称超级电容器(ASC)装置。该ASC装置表现出40.8F/g的高比电容,同时将工作电压窗口拓宽至2.0V。该装置的高电化学性能归因于成功的铝电沉积,这促进了C-CA@NiO和C-CA材料的导电性和孔隙率增加。据我们所知,这是关于将生物质废弃物转化为集流体和活性材料以制造实用ASC装置的开创性研究。我们的研究结果突出了将加热烟草废弃物中的铝箔纸和CA过滤器作为储能装置的重要组件进行再利用的潜力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a440/10573335/4bd0a0184b3b/materials-16-06454-g001.jpg

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