Munteanu Tatiana, Brunel Frédéric, Camplo Michel, Siri Olivier
CNRS UMR 7325 Centre Interdisciplinaire de Nanoscience de Marseille (CINaM), Campus de Luminy, Aix Marseille University, 13288 Marseille, Cedex 09, France.
Molecules. 2024 Oct 12;29(20):4830. doi: 10.3390/molecules29204830.
Temperature is an essential physical characteristic that influences all biological processes. Building on previous research on dialkylamino-functionalized rhodamine-based thermo-sensors, we investigate herein the thermosensitive properties of triamino-phenazinium dyes. Through a simple five-step synthetic route, we synthesized amino-phenazinium chromophores and , featuring diethylamine substituents at different positions. A comparative analysis of optical properties and thermosensitivity was conducted on these compounds and an isomer, , in which butylamine moiety replaced the diethylamine group. The different emissive behaviors of the three fluorophores emphasize that not only the chemical nature but also the specific position of the alkylamine substituent play fundamental roles in the synthesis of highly emissive thermo-probes.
温度是影响所有生物过程的一个基本物理特性。基于先前对二烷基氨基官能化罗丹明基热传感器的研究,我们在此研究三氨基吩嗪鎓染料的热敏特性。通过一条简单的五步合成路线,我们合成了在不同位置具有二乙胺取代基的氨基吩嗪鎓发色团 和 。对这些化合物以及一种异构体 (其中丁胺部分取代了二乙胺基团)进行了光学性质和热敏性的比较分析。这三种荧光团不同的发射行为强调,不仅化学性质,而且烷基胺取代基的特定位置在高发射性热探针的合成中都起着重要作用。