Effect of Gamma-Irradiation on Electrochemical Properties of Nicos for Supercapacitor Application

IF 0.9 4区 材料科学
M. Marashdeh, Mamduh J. Aljaafreh, G. Al-Mazaideh, H. Akhdar, Abbas I. Alakhras, Ibrahim F. Alhamarneh
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Abstract

We used an elementary hydrothermal approach to create this NiCoS nanohybrid. Analysis using X-ray diffraction (XRD) verified that the creation of this nanomaterial was successful. The material underwent cyclic voltammetry (CV), galvanostatic charge-discharge (GCD), testing in preparation for its use as a supercapacitor electrode. The innovative aspect of this work was researching how electrodes’ supercapacitor qualities were affected by gamma-irradiation with an average energy of 1.25 MeV. The manufactured samples endured gamma radiation exposure with 5, 10, 15, 25, and 50 kGy dosages. Following 5000 consecutive cycles, the sample subjected to the most significant dose of gamma radiation exhibited the lowest charge transfer resistance, maximum stability, and highest specific capacity of 253 Cg−1. Compared to the non-irradiation sample, the gamma-ray exposed NiCoS (50 kGy) had an 85 s longer discharge duration at a current density of 0.1 Ag−1. These data indicate that gamma radiation has a positive influence on electrode performance rather than a negative one. For this reason, NiCoS may be used as an electrode material for gamma radiation medium supercapacitors.
伽马射线辐照对超级电容器应用中尼科斯电化学性质的影响
我们采用了一种基本的水热法来制造这种镍钴硒纳米杂化物。利用 X 射线衍射 (XRD) 进行的分析验证了这种纳米材料的制造是成功的。我们对这种材料进行了循环伏安法(CV)和电静态充放电法(GCD)测试,以便将其用作超级电容器电极。这项工作的创新之处在于研究平均能量为 1.25 MeV 的伽马射线照射如何影响电极的超级电容器质量。制造的样品经受了 5、10、15、25 和 50 kGy 剂量的伽马辐射照射。经过 5000 次连续循环后,受到最大剂量伽马辐射的样品电荷转移电阻最小,稳定性最高,比容量也最高,达到 253 Cg-1。与未受辐照的样品相比,在电流密度为 0.1 Ag-1 的情况下,受伽马射线照射的镍钴酸盐(50 kGy)的放电持续时间延长了 85 秒。这些数据表明,伽马射线对电极性能的影响是积极的,而不是消极的。因此,NiCoS 可用作伽马辐射介质超级电容器的电极材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Science of Advanced Materials
Science of Advanced Materials NANOSCIENCE & NANOTECHNOLOGY-MATERIALS SCIENCE, MULTIDISCIPLINARY
自引率
11.10%
发文量
98
审稿时长
4.4 months
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