Thin Film Deposition Technology and Electrochromism: A Review of Techniques, Materials, and Applications
Abstract
Thin film deposition technology underpins a vast range of modern devices, from microelectronics and optical coatings to energy storage and smart-window systems. This paper presents a structured review of the principal thin film deposition techniques — physical vapor deposition (thermal evaporation, sputtering, and pulsed laser deposition), chemical vapor deposition, and solution-based wet-chemical methods such as sol-gel, spray pyrolysis, SILAR, and electrodeposition — with attention to their operating principles, achievable film quality, and relative advantages. The paper then turns to electrochromism, the reversible and persistent change in optical transmittance or reflectance of a material under an applied electric field, driven by ion intercalation and accompanying redox reactions. The fundamental mechanism of electrochromism is described for the archetypal material tungsten trioxide (WO3), together with figures of merit including coloration efficiency, optical density, switching time, and cycling stability. The influence of deposition technique and process parameters on the electrochromic performance of WO3 and related oxide films is analysed and summarised in comparative tables, supported by simulated switching-kinetics, transmittance-spectra, film-growth, and cyclic-voltammetry graphs. Applications in smart windows, anti-glare automotive mirrors, electrochromic displays, and energy-efficient glazing are discussed, along with the principal characterisation techniques used to evaluate electrochromic thin films. The paper concludes that the judicious choice of deposition technique and process parameters is central to optimising the electrochromic response of thin film devices and identifies flexible and hybrid organic–inorganic electrochromic materials as promising directions for future research.
Cite as:
Shital Baburao Khot, Shailaja S. Wadkar& Avdhut Shivaji Sutar. (2026). Thin Film Deposition Technology and Electrochromism: A Review of Techniques, Materials, and Applications. Journal of Advances in Nanotechnology and Its Applications, 8(2), 66–77. https://doi.org/10.5281/zenodo.21839297
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