Institute of Physical and Organic Chemistry, Southern Federal University, 194/2 Stachka ave., 344090 Rostov-on-Don, Russian Federation.
Institute of Physical and Organic Chemistry, Southern Federal University, 194/2 Stachka ave., 344090 Rostov-on-Don, Russian Federation.
Spectrochim Acta A Mol Biomol Spectrosc. 2023 Sep 5;297:122712. doi: 10.1016/j.saa.2023.122712. Epub 2023 Apr 7.
Visible-light-mediated photochromic compounds with NIR absorption and fluorescence are of great interest for use in different biomedical applications. In this work, new representatives of spiropyrans with conjugated cationic 3H-indolium substituents in different positions of 2H-chromene moiety were synthesized. The electron-donating methoxy groups were introduced in the uncharged indoline and charged indolium cycles to form the effective conjugation chain between the hetarene moiety and the cationic fragment for reaching NIR absorption and fluorescence. The molecular structure and the effects of cationic fragment position on the mutual stability of the spirocyclic and merocyanine forms of compounds were carefully studied in the solutions and solid state by NMR, IR, HRMS, single-crystal XRD, and quantum chemical calculations. It was found that the obtained spiropyrans demonstrate positive or negative photochromism depending on the cationic fragment's position. One of spiropyrans has shown bidirectional photochromic properties induced exclusively by visible light of different wavelengths in both directions. The photoinduced merocyanine forms of compounds possessed far-red shifted absorption maxima and NIR fluorescence, which makes them prospective fluorescent probes for bioimaging.
具有近红外吸收和荧光的可见光致变色化合物在不同的生物医学应用中引起了极大的关注。在这项工作中,合成了具有共轭阳离子 3H-吲哚取代基的螺吡喃的新代表物,这些取代基位于 2H-色烯部分的不同位置。供电子甲氧基分别引入到中性吲哚啉和带电吲哚翁环中,以在杂环部分和阳离子片段之间形成有效的共轭链,从而实现近红外吸收和荧光。通过 NMR、IR、HRMS、单晶 XRD 和量子化学计算,在溶液和固态中仔细研究了阳离子片段位置对化合物的螺环和甲川形式的相互稳定性的影响。结果发现,所得到的螺吡喃表现出正或负光致变色性,这取决于阳离子片段的位置。其中一种螺吡喃具有独特的双向光致变色性质,仅在两个方向上通过不同波长的可见光诱导。化合物的光致变色甲川形式具有远红移的吸收最大值和近红外荧光,这使得它们成为生物成像有前景的荧光探针。