Positive Influence of Oxalate and Cyanate on the Supercapacitance Performance of V/Co 2D-Nanolayered Structures

IF 3.1 4区 化学 Q2 CHEMISTRY, INORGANIC & NUCLEAR Inorganics Pub Date : 2023-11-26 DOI:10.3390/inorganics11120458
O. Saber, S. Ansari, N. Parveen, N. Shaalan, A. Osama, Mostafa Osama
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Abstract

Two-dimensional (2D) nanolayered and nanohybrid structures, which are composed of different species of organic anions and multi-valence inorganic cations, are considered favorable in the field of energy storage for use as supercapacitors. In this study, host–guest interactions were used to build a series of these nanohybrids. The host was the layered double hydroxides of vanadium–cobalt (V/Co) nanolayers with different molar ratios. Cyanate was used as a guest to design a V/Co supercapacitor with a 2D-nanolayered structure. In addition, oxalate was used as a new additive to improve the performance of the V/Co supercapacitor. X-ray diffraction, infrared spectroscopy, thermal analyses, and scanning electron microscopy confirmed the formation of the nanolayered structures of cyanate-V/Co. In the case of the oxalate-V/Co nanostructures, a new phase of cobalt oxalate was produced and combined with the nanolayered structure to build a 3D porous structure. A three-assembly electrode system was used to study the electrochemical supercapacitive behavior of the cyanate-V/Co and oxalate-V/Co nanolayered structures. The results indicated that the OXVC-20 electrode possessed the highest specific capacitance as compared to that of the OXVC-16 and CNOVC electrodes. An excellent stability performance of up to 91% after various charge–discharge cycles was detected for the optimum case. Because of the positive effect of oxalate on the supercapacitance performance of the V/Co supercapacitor, it is suggested as a new track for building active electrodes for high-performance supercapacitor applications.
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草酸盐和氰酸盐对 V/Co 二维纳米层结构超级电容性能的积极影响
二维(2D)纳米层和纳米杂化结构由不同种类的有机阴离子和多价无机阳离子组成,在能量存储领域被认为是用作超级电容器的有利条件。在本研究中,利用主客体相互作用构建了一系列此类纳米混合体。宿主是不同摩尔比的钒钴(V/Co)纳米层的层状双氢氧化物。氰酸盐被用作客体,用于设计具有二维纳米层结构的 V/Co 超级电容器。此外,还使用草酸盐作为新的添加剂来提高 V/Co 超级电容器的性能。X 射线衍射、红外光谱、热分析和扫描电子显微镜证实了氰酸酯-V/Co 纳米层结构的形成。在草酸盐-V/Co 纳米结构中,产生了草酸钴的新相,并与纳米层状结构相结合,形成了三维多孔结构。利用三组装电极系统研究了氰酸盐-V/Co 和草酸盐-V/Co 纳米层状结构的电化学超级电容行为。结果表明,与 OXVC-16 和 CNOVC 电极相比,OXVC-20 电极具有最高的比电容。在最佳情况下,经过各种充放电循环后,电极具有高达 91% 的出色稳定性。由于草酸盐对 V/Co 超级电容器超级电容性能的积极影响,建议将其作为构建高性能超级电容器应用活性电极的新途径。
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来源期刊
Inorganics
Inorganics Chemistry-Inorganic Chemistry
CiteScore
2.80
自引率
10.30%
发文量
193
审稿时长
6 weeks
期刊介绍: Inorganics is an open access journal that covers all aspects of inorganic chemistry research. Topics include but are not limited to: synthesis and characterization of inorganic compounds, complexes and materials structure and bonding in inorganic molecular and solid state compounds spectroscopic, magnetic, physical and chemical properties of inorganic compounds chemical reactivity, physical properties and applications of inorganic compounds and materials mechanisms of inorganic reactions organometallic compounds inorganic cluster chemistry heterogenous and homogeneous catalytic reactions promoted by inorganic compounds thermodynamics and kinetics of significant new and known inorganic compounds supramolecular systems and coordination polymers bio-inorganic chemistry and applications of inorganic compounds in biological systems and medicine environmental and sustainable energy applications of inorganic compounds and materials MD
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