4.7 Article

Study of solvent variation on controlled synthesis of different nanostructured NiCo2O4 thin films for supercapacitive application

期刊

JOURNAL OF COLLOID AND INTERFACE SCIENCE
卷 588, 期 -, 页码 589-601

出版社

ACADEMIC PRESS INC ELSEVIER SCIENCE
DOI: 10.1016/j.jcis.2020.12.057

关键词

Thin Film; NiCo2O4; Solvent; Chemical route: Supercapacitor

资金

  1. University Grant Commission (UGC) Government of India through UGC-NET JRF fellowship
  2. Chhatrapati Shahu Maharaj Research Training and Human Development Institute (SARTHI), Pune (Government of Maharashtra) under the Chhatrapati Shahu Maharaj National Research Fellowship2019

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The study investigated the controlled synthesis of nanostructured NiCo2O4 thin films on stainless steel substrates using a facile and economical chemical bath deposition technique without adding a surfactant or binder. The influence of different solvent compositions on the morphological and electrochemical properties was systematically studied. The NiCo2O4 thin films exhibited different morphologies and electrochemical performances depending on the solvent composition, with potential applications in supercapacitors due to their specific capacitance values and excellent capacitance retention after cycles.
The present investigation deals with controlled synthesis of nanostructured NiCo2O4 thin films directly on stainless steel substrates by facile and economical chemical bath deposition technique, without adding a surfactant or a binder. The consequences of different compositions of solvents on morphological and electrochemical properties have been studied systematically. We used different solvent composition as Double Distilled Water (DDW), DDW:Ethanol (1:1) and DDW: N, N dimethylformamide (1:1). The films have been named as NCO-W for DDW, NCO-WE for DDW: Ethanol (1:1) solvent and NCO-WD for DDW: N, N dimethylformamide (1:1) solvent. The morphologies of NiCo2O4 thin films modify substantially with change in a solvent. NCO-W exhibited the spikes of Crossandra infundibuliformis like nanostructures. The NCO-WE favored the formation of uniformly distributed leaf-like nanostructure whereas NCO-WD showed randomly oriented nanoplates all over the surface area. The Electrochemical performance of these NiCo2O4 thin films were studied using cyclic voltammetry, chronopotentiometry, and electrochemical impedance spectroscopy techniques. The NCO-W, NCO-WE and NCO-WD electrodes showed specific capacitance values of 271, 553 and 140 F/g respectively at the current density of 0.5 mA/cm(2) and excellent capacitance retention of 90%, 91% and 80% after 2000 cycles for NCO-W, NCO-WE and NCO-WD samples respectively. This result reveals that NiCo2O4 is a prominent electrode material for supercapacitor application. (C) 2020 Elsevier Inc. All rights reserved.

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