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Spectroscopy Letters
An International Journal for Rapid Communication
Volume 57, 2024 - Issue 1
129
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Research Articles

Effect of annealing treatment on optical properties of structural color films

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Pages 1-13 | Received 21 Mar 2023, Accepted 27 Oct 2023, Published online: 20 Nov 2023
 

Abstract

Structural color materials based on periodic micro and nano structures present unique color rendering mechanism and optical properties, and have a wide range of applications in display, packaging, sensing and other fields. However, it is still facing the problems of constructing large area, good consistency and low cost periodic structures. In this paper, the structural color film was prepared by annealing treatment on a periodic template. The effects of coating time, annealing time and annealing process on the optical properties of the sample such as hue and saturation were analyzed. It was confirmed that the sample with 300 nm polystyrene microsphere template presented orange yellow with incident angle of 30° before annealing, then turned to be light pink under 800 °C for 120 min annealing process and orange red under 800 °C for 180 min in air. Additionally, the sample with 420 nm polystyrene microsphere template showed cyan before annealing, and yellow-green under 800 °C for 120 min annealing treatment and orange-yellow under 800 °C for 180 min. The periodicity of the annealed gold microspheres was still limited by the template period with different diameters. Morever, when the coating and annealing time were the same, the higher the annealing temperature was, the higher the saturation get. Under the same coating time and annealing temperature, the saturation was higher with short annealing time, and the hue blue-shifted as the incident angle increased from 15° to 45°. While fixing the annealing time and temperature, the saturation increased gradually as the coating time increasing from 10S to 40S, and the color of the sample red-shifted.

Graphical Abstract

Disclosure statement

No potential conflict of interest was reported by the author(s).

Additional information

Funding

This work was supported by the National Natural Science Foundation of China (No. 61805018), and College’s Scientific Research Project (BIGC Ec202302).

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