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March 22, 2026Nanomaterials0 citationsOpen Access

Thermally Engineered Nickel-Tungsten Oxide Films for Energy Efficient Electrochromic Devices

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UKUsha K.S.Gachon UniversitySLS. W. Ricky LeeKorea Advanced Institute of Science and Technology

Key Points

  • This study examines how substrate temperature affects the electrochromic properties of nickel-tungsten oxide thin films.
  • Investigated the impact of substrate temperature on thin films
  • Employed Raman spectroscopy to verify structural properties
  • Characterized electrochromic performance by optical contrast and color dynamics
  • Lower substrate temperatures resulted in better electrochromic performance
  • Films displayed 64% optical contrast for enhanced visibility
  • Coloration and bleaching dynamics were measured at 2.21 s and 0.93 s respectively

Abstract

Nickel-oxide-based anodic electrochromic materials are extensively utilized as counter electrodes in smart window systems due to their reversible optical response during ion insertion and extraction. This study systematically investigates the influence of substrate temperature on the electrochromic properties of sputtered nickel-tungsten oxide thin films. The deposited thin films exhibit an amorphous structure. An increase in substrate temperature results in a decrease in nickel-vacancy concentration. Raman spectroscopy verifies the amorphous nature. Films deposited at lower substrate temperatures exhibit superior electrochromic performance, characterized by improved optical contrast of 64% and rapid coloration (2.21 s) and bleaching (0.93 s) dynamics. The enhanced performance is ascribed to the disordered amorphous structure and the existence of enough nickel vacancies, which collectively facilitate efficient and reversible lithium-ion transfer. This study illustrates that meticulous regulation of substrate temperature is an effective method for adjusting the microstructure and defect chemistry of nickel–tungsten oxide thin films, rendering them appropriate as effective counter electrodes for energy-efficient smart window applications.

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Cite This Study

K.S. et al. (2026) studied this question.

synapsesocial.com/papers/69bf393dc7b3c90b18b438a1https://doi.org/10.3390/nano16060375
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