Suppr超能文献

吡唑偶氮染料:一种具有光致质子释放特性且在生物介质中展现出突出光物理性质的新型偶氮染料结构。

Pyrylazo Dye: A Novel Azo Dye Structure with Photoinduced Proton Release and Highlighted Photophysical Properties in Biological Media.

作者信息

Santos Willy G, Pereira Lucas H, Ramin Beatriz B S, Botelho Sabrina M, Morais Sinara T B, Cardoso Daniel R, Santagneli Silvia H, Ferreira Fabio F, Leitão Andrei, Ribeiro Sidney J L

机构信息

Federal University of ABC-UFABC, Av. dos Estados 5001, Santo André, SP 09210-170, Brazil.

Institute of Chemistry, São Paulo State University-UNESP, Araraquara, SP 14800-060, Brazil.

出版信息

ACS Omega. 2024 Dec 27;10(3):2517-2527. doi: 10.1021/acsomega.4c06429. eCollection 2025 Jan 28.

Abstract

A straightforward method for synthesizing a stable, photoreactive, and fluorescent-probe azo dye molecule is presented, highlighting the influence of azo and pyrylium groups within the electronic structure of the novel dye. This compound, named the pyrylazo molecule, is synthesized through the chemical reaction between 2,4,6-trimethylpyrylium and a 4-methoxybenzenediazonium species. The methyl group at the para position of the pyrylium readily reacts with the diazonium molecule, forming a stable protonated pyrylium-azo dye (N-protonated pyrylazo). The pyrylazo structure can easily change into its N-deprotonated form upon introduction of a weak base, such as an amine, promoting significant spectral shifts in the visible absorption and fluorescence bands. Because of that and other photochemical properties, this novel dye has shown significant potential for applications in photoinduced processes and biological contexts, particularly in Coulombic interactions with micelles and animal cells. In contrast to other nonfluorescent azo dyes, the singlet excited state of pyrylazo is deactivated through a radiative process in organized media, as evidenced by its behavior during micelle media, cell membrane permeation, and fluorescence emission in the cytoplasm. Nanosecond-transient absorption spectroscopy reveals a reversible photoinduced proton release process occurring in the excited singlet state, suggesting that the excited states of pyrylazo may play roles in transport through ion channels, artificial photosynthesis, and photoinduced protein folding. These promising applications underscore the pyrylium-azo structure as a novel dye with remarkable photochemical and photophysical properties not observed in other azo dye molecules reported before.

摘要

本文提出了一种合成稳定、光反应性和荧光探针偶氮染料分子的直接方法,突出了新型染料电子结构中偶氮基和吡喃鎓基团的影响。这种化合物被命名为吡喃偶氮分子,它是通过2,4,6-三甲基吡喃鎓与4-甲氧基苯重氮盐之间的化学反应合成的。吡喃鎓对位的甲基很容易与重氮分子反应,形成稳定的质子化吡喃鎓-偶氮染料(N-质子化吡喃偶氮)。引入弱碱(如胺)后,吡喃偶氮结构很容易转变为其N-去质子化形式,从而促使可见吸收和荧光带发生显著的光谱位移。由于这一特性以及其他光化学性质,这种新型染料在光诱导过程和生物环境中,特别是在与胶束和动物细胞的库仑相互作用中,显示出巨大的应用潜力。与其他非荧光偶氮染料不同,在有序介质中,吡喃偶氮的单重激发态通过辐射过程失活,这在其在胶束介质、细胞膜渗透和细胞质荧光发射过程中的行为中得到了证明。纳秒瞬态吸收光谱揭示了在激发单重态中发生的可逆光诱导质子释放过程,这表明吡喃偶氮的激发态可能在通过离子通道的传输、人工光合作用和光诱导蛋白质折叠中发挥作用。这些有前景的应用突出了吡喃鎓-偶氮结构作为一种新型染料,具有以前报道的其他偶氮染料分子中未观察到的显著光化学和光物理性质。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ee54/11780562/0e3d2a21c5d2/ao4c06429_0011.jpg

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验