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Infrared Dielectric Function of Photochromic Thiazolothiazole Embedded Polymer

Materials Science 2026-01-22 v1 Soft Condensed Matter Optics

Abstract

In this paper, the infrared dielectric function of photochromic dipyridinium thiazolo[5,4-d]thiazole embedded in polymer is reported. Bulk thiazolo[5,4-d]thiazole-embedded polymer samples were prepared by drop casting and dehydration in room temperature. The samples were investigated using spectroscopic ellipsometry before and after irradiation with a 405~nm diode laser in the infrared spectral range from 500 cm-1 to 1800 cm-1. The model dielectric functions of the thiazolothiazole embedded polymer film for its TTz2+ (unirradiated) and TTz0 (irradiated) states are composed of a series of Lorentz oscillators in the measured spectral range. A comparison of the obtained complex dielectric functions for the TTz2+ and TTz0 states shows that the oscillators located in the spectral ranges 500 cm-1 - 700 cm-1, 1300 cm-1 - 1400 cm-1, and 1500 cm-1 - 1700 cm-1 change in both amplitude and resonant frequency upon transition between the states. Additionally, a resonance at approximately 1050 cm-1 exhibited a change in oscillator amplitude but not resonant frequency due to the photochromic transition.

Keywords

Cite

@article{arxiv.2503.22012,
  title  = {Infrared Dielectric Function of Photochromic Thiazolothiazole Embedded Polymer},
  author = {Nuren Z. Shuchi and Tyler J. Adams and Naz F. Tumpa and Dustin Louisos and Glenn D. Boreman and Michael G. Walter and Tino Hofmann},
  journal= {arXiv preprint arXiv:2503.22012},
  year   = {2026}
}

Comments

12 pages, 3 figures