4.1 Article

Correlation of annealing temperature on physico-chemical properties and electrochromic performance of nebulizer spray-coated NiO films

期刊

INORGANIC AND NANO-METAL CHEMISTRY
卷 53, 期 2, 页码 178-190

出版社

TAYLOR & FRANCIS INC
DOI: 10.1080/24701556.2021.2023571

关键词

nickel oxide; nebulizer spray pyrolysis technique; annealing temperature; cationic vacancies; electrochromism

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In this study, Nickel Oxide (NiO) thin films were deposited over glass and FTO substrates using nebulizer spray pyrolysis technique. The influence of different annealing temperatures on film stoichiometry and its subsequent effect on physical and electrochromic properties were investigated. XRD, XPS, HR-SEM, EDS and AFM were used to analyze the structural information, chemical state, and morphological properties of the deposited films. UV-Vis spectroscopic analysis revealed the variation of optical parameters associated with defects in NiO. Electrochromic performance of the films was evaluated using various electrochemical measurements, and enhanced electrochromic behavior was observed in NiO films with higher concentration of Ni3+ ions.
Nickel Oxide (NiO) thin films were deposited over glass and FTO substrates using nebulizer spray pyrolysis technique. The influence of various annealing temperatures (400, 450, 500 and 550 degrees C) on film stoichiometry and its subsequent effect on physical and electrochromic properties were studied. Structural information, chemical state and change in morphological properties of the deposited films concerning the film stoichiometry and concentration of cationic vacancy (V-Ni) induced Ni3+ ions are discussed with the help of XRD, XPS, HR-SEM, EDS and AFM. The variation of optical parameters associated with the presence of defects in NiO is reported from UV-Vis spectroscopic analysis. Electrochromic performance of the prepared films was evaluated using cyclic-voltammetry, chronoamperometry, chronocoulometry and iono-optical electrochemical measurements. Enhanced electrochromic behavior with a rapid switching response time of 0.3/0.5 s of bleached/colored states respectively was realized for NiO film with relatively higher concentration of Ni3+.

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