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Poly(vinylidene fluoride) and Carbon Derivative Structures from Eco-Friendly MOF-5 for Supercapacitor Electrode Preparation with Improved Electrochemical Performance

机译:聚(偏二氟乙烯)和来自Eco型MOF-5的碳衍生物结构,用于超级涂物电极制剂,具有改善的电化学性能

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摘要

Electrodes from carbonized Zn4O(1,4-benzodicarboxylic acid) (MOF-5) structures were prepared successfully via evaporating the solvent with a poly(vinylidene fluoride) (PVDF) binder. The solvent used for a nanocomposite cast was easily removed. Such an elegant method for preparing electrodes provides a facile, cost-effective, and void/cracking-free nanocomposite distribution on the current collector. The highly porous nanoparticles containing pure carbon attach well to the PVDF membrane which results in an increased active surface area of the electrode to 847 m2/g. The electrochemical analysis shows that the best weight ratio of CMOF-5 to PVDF equals 85:15, 80:20, and 75:25, respectively. The specific capacitance of these samples is 218 F/g, 210 F/g, and 180 F/g, correspondingly. An additional advantage of the electrode prepared from the carbonized MOF-5 is the possibility to synthesis MOF structures from recovered substrates used in its synthesis (distilled N,N-Dimethylformamide DMF and terephthalic acid recovered from polyethylene terephthalate waste). We will demonstrate this in this contribution as well. Furthermore, the carbonized MOF-5 can be recovered from the spent electrode and reused again in the electrochemical device.
机译:通过用聚(偏二氟乙烯)(PVDF)粘合剂蒸发溶剂,成功地制备来自碳化Zn4O(1,4-苯二羧酸)(MOF-5)结构的电极。用于纳米复合材料浇铸的溶剂易于除去。用于制备电极的这种优雅方法提供了在集电器上的容纳,经济效率和无空隙/裂化的纳米复合材料分布。含有纯碳的高度多孔纳米颗粒连接到PVDF膜上,这导致电极的增加的活性表面积至847m2 / g。电化学分析表明,CMOF-5至PVDF的最佳重量比分别等于85:15,80:20和75:25。这些样品的比电容相应地是218f / g,210f / g和180 f / g。由碳化的MOF-5制备的电极的额外优点是从其合成中使用的回收的基材合成MOF结构(从聚对苯二甲酸乙二醇酯废回收的蒸馏N,N-二甲基甲酰胺DMF和对苯二甲酸)的可能性。我们也将在这一贡献中展示这一点。此外,可以从花电极中回收碳化的MOF-5并在电化学装置中再次重复使用。

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