Multi-stimuli-responsive azomethine embedding the phenoxazine chromophore as an extra mean of tuning smart materials

吩恶嗪 发色团 梳理 嵌入 化学 材料科学 光化学 计算机科学 药理学 复合材料 吩噻嗪 医学 人工智能
作者
Radu‐Dan Rusu,Stefan Ursache,Mariana‐Dana Damaceanu,Catalin-Paul Constantin
出处
期刊:Dyes and Pigments [Elsevier]
卷期号:206: 110627-110627 被引量:3
标识
DOI:10.1016/j.dyepig.2022.110627
摘要

Multi-stimuli-responsive architectures incorporating photochromic molecules with light-triggered behavior are listed as “smart” materials. Pursuing to develop such materials, this study is focused on the development of a new structurally designed phenoxazine (POZ)-based dye, which was thoroughly assessed with regard to the structural, photo-optical, and electrochemical characteristics. The sensing capability of the newly developed material was first demonstrated towards transition/heavy metallic ions detection with good sensitivity in solution at the addition of only 0.2 equivalents of Cu 2+ , Fe 3+ or Hg 2+ ions. In solid state (blend film), the dye complexation was complete after 1120 s of immersion in the Cu 2+ solution. The sensitivity towards hydrochloric acid was very high after the addition of only 0.2 equivalents, whilst the full dye protonation occurred after 4 s of exposure to acid vapors. The synthesized dye is also endowed with photodetection capabilities, showing important spectral changes in chloroform solution after only 10 s of exposure to light of 354 nm. None the less, this dye shows electrochromic response, with 7.4 and 4.2 s for coloring and blanching, respectively, coloration efficiency of 121 cm 2 /C, and switching stability and reversibility of 72% after 50 cycles. Complementary theoretical calculations by DFT were employed to validate these experimental findings. Due to these multi-stimuli-responsive functions, the developed dye may find applications in optoelectronic and biological fields. • Synthesis of phenoxazine-based imine dye with multistimuli-responsive ability. • Sensing ability of the dye towards low amounts of Cu 2+ , Fe 3+ , and Hg 2+ ions. • Fast response down to 4 s in solid state during exposure to acid vapors. • Photoswitching ability mediated by the surrounding media. • Electrochromic behavior revealed for phenoxazine for the fist time.
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