首页> 外文期刊>Journal of Materials Chemistry, A. Materials for energy and sustainability >Template-free synthesis of carbon hollow spheres and reduced graphene oxide from spent lithium-ion batteries towards efficient gas storage
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Template-free synthesis of carbon hollow spheres and reduced graphene oxide from spent lithium-ion batteries towards efficient gas storage

机译:无碳中空球体的无模板合成,以及废锂离子电池的石墨烯氧化物朝向有效储气

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Herein, we report the facile synthesis of carbon hollow spheres (CHS) and reduced graphene oxide (rGO) from separators and graphite recovered from a spent lithium-ion battery (LIB), respectively, towards a " Waste-to-Wealth" approach. Subsequently, both CHS and rGO were employed to explore the gas storage capabilities for storing various gases such as N-2, H-2, and CO2. For the first time, a facile one-step carbonization process was employed to concoct CHS from the recovered polymer separators without the use of a template. Similarly, the synthesis of rGO was undertaken entirely via the mended graphite and using the outer metallic Al cases as a reducing agent. The specific surface area and total pore volume of rGO and CHS were estimated to be 374 & 402 m(2) g(-1) and 0.16 & 0.30 cm3 g(-1), respectively. Moreover, the H-2 uptake at 15 bar and 77 K was found to be 1.78 wt% for rGO and 1.22 wt% for CHS. Interestingly, the acquired rGO from the waste constituents displays a high CO2 uptake of 12 wt% and 33 wt% can be stored in the CHS at 40 bar and 298 K. This study affords the prospect of alternate/efficient gas storage materials by recycling spent LIB in an economically and environmentally friendly approach.
机译:在此,我们从分离器报告碳空心球(CHS)和还原的石墨烯氧化物(RGO)的简便合成和分别石墨从废锂离子电池(LIB)回收,向“废物转化为富”的方法。随后,既CHS和RGO被雇用来探索气体存储功能,用于存储各种气体如N-2,H-2,和CO 2。对于第一次,一个浅显一步法碳化过程用于从回收的聚合物隔板不使用模板的编造CHS。类似地,RGO的合成经由谁料石墨完全进行,并使用外金属Al的情况下作为还原剂。比表面积和RGO和CHS的总孔体积估计为374402米(2)克(-1),0.16&0.30立方厘米克(-1),分别。此外,H-2摄取在15巴和77K的被发现是用于RGO 1.78%(重量)和1.22%(重量)为CHS。有趣的是,所获取的RGO从废弃物组分显示的12重量%和33重量%的高CO 2吸收可以在40巴和298 K.被存储在CHS本研究通过回收花费得到备用/高效率的气体存储材料的前景LIB在经济和环境友好的方式。

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