Study of 2D layered nickel pyrophosphate using 3D Bode mapping and stability forecasting for supercapacitors

IF 4.9 2区 化学 Q2 CHEMISTRY, PHYSICAL
Satyajeet S. Patil , Akhilesh P. Patil , Rahul S. Redekar , Shweta M. Pawar , Nilesh L. Tarwal , Pramod S. Patil
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引用次数: 0

Abstract

In recent years, layered materials have gained attention in energy storage application due to their high surface to volume ratio and stable nanoarchitecture. Herein, 2D layered nickel pyrophosphate (NP) is synthesized using the hydrothermal method. The effect of annealing temperature on the electrochemical performance of the NP is discussed. Various physicochemical characterizations of the NP are carried out to understand its features. XRD confirms the NP phase of the material with the monoclinic crystal structure. Rietveld analysis is carried out to understand the structural parameters of the NP. FE-SEM shows the uniformity of 2D layered and highly porous microsheet like morphology in NP material. The detailed charge storage dynamics is analyzed using different electrochemical parameters like standard rate constant, charge transfer and diffusion coefficient. Moreover, the 3D Bode mapping measurements are carried out to obtain the in charge conduction in depth. The NP electrode shows a specific capacitance of 16382.40 mF/cm2 (1820.26 µAh/cm2) at a 10 mA/cm2 current density. The cyclic stability shows 99.98 % capacitance retention after 4240 cycles. Time series analysis is used to predict and forecast the cyclic stability data. Furthermore, an aqueous hybrid SC shows a specific capacitance of 667.32 mF/cm2 (259.51 µAh/cm2) at a current density of 10 mA/cm2 with energy and power density of 181.66 µWh/cm2 and 6.48 mW/cm2. All the characterization results suggest that NP can be a potential candidate for SCs.
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来源期刊
CiteScore
8.70
自引率
9.60%
发文量
2421
审稿时长
56 days
期刊介绍: Colloids and Surfaces A: Physicochemical and Engineering Aspects is an international journal devoted to the science underlying applications of colloids and interfacial phenomena. The journal aims at publishing high quality research papers featuring new materials or new insights into the role of colloid and interface science in (for example) food, energy, minerals processing, pharmaceuticals or the environment.
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