由三钙化MoS3-MoO3-聚-O-氨基苯硫酚纳米复合材料制成的对称双电极伪超级电容器

Mohamed Rabia, A. Ben Gouider Trabelsi, F. Alkallas, A. Elsayed
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引用次数: 0

摘要

一种新型纳米复合材料--MoS3-MoO3/聚-O-氨基苯硫酚(MoS3-MoO3/POABT)--采用一锅法合成,作为双电极配置超级电容器的材料具有广阔的应用前景。这种纳米复合材料表现出显著的形态特征,具有平均直径为 80 纳米的均匀颗粒和多孔结构。良好的形态有助于提高所制造的伪超级电容器的性能。通过评估 MoS3-MoO3/POABT 纳米复合材料的充电/放电行为和氧化还原反应的循环伏安曲线,可以发现其作为超级电容器材料的功效。值得注意的是,这种制备的超级电容器的比电容(CS)达到了 152 F/g。此外,在电流密度为 0.2 A/g 时,能量密度(E)达到峰值 12.6 W h kg-1。如此高的能量密度表明,超级电容器能够有效地存储大量能量,供实际使用。重要的是,它的稳定性依然很强,250 次循环后的保持率高达 98%,即使在 1000 次循环后,保持率也仅略微下降至 95%。在长时间循环后仍能保持如此出色的稳定性,凸显了超级电容器材料的耐用性。如此可靠的性能使 MoS3-MoO3/POABT 纳米复合材料成为超级电容器应用的可靠选择,确保了其在各种能源存储需求中的使用寿命和稳定性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Symmetric two-electodes pseudosupercapacitor from Trichalcogenide MoS3-MoO3-poly-O-amino-benzenethiol nanocomposite
A novel nanocomposite, MoS3-MoO3/poly-O-amino-benzenethiol (MoS3-MoO3/POABT), has been synthesized in a one-pot process and demonstrates promising applications as a material for a two-electrode configuration supercapacitor. This nanocomposite exhibits remarkable morphological characteristics, featuring uniform particles with an average diameter of 80 nm and a porous structure. The advantageous morphology contributes to the enhanced performance of the fabricated pseudo supercapacitor. The evaluation of the charge/discharge behavior and cyclic voltammetry curves pertaining to the redox reaction of the MoS3-MoO3/POABT nanocomposite reveals its efficacy as a supercapacitor material. The specific capacitance (CS) achieved for this fabricated supercapacitor is noteworthy at 152 F/g. Furthermore, the energy density (E) peaks at 12.6 W h kg-1 when operating at a current density of 0.2 A/g. This high energy density demonstrates the supercapacitor's ability to store significant energy for practical use efficiently. Importantly, its stability remains strong, with an impressive 98% retention after 250 cycles, and even after 1000 cycles, it only slightly decreases to 95%. This remarkable stability over extended cycling periods underscores the durability of the materials in the supercapacitor. Such reliable performance establishes the MoS3-MoO3/POABT nanocomposite as a dependable choice for supercapacitor applications, ensuring longevity and consistent performance in diverse energy storage needs.
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