Jose Jiney, Ueno Yuichiro, Castro Juan C, Li Lingling, Burgess Kevin
Department of Chemistry, Texas A & M University, Box 30012, College Station, TX 77842-3012 USA.
Tetrahedron Lett. 2009 Nov 25;50(47):6442-6445. doi: 10.1016/j.tetlet.2009.08.130.
This project was initiated to develop energy transfer dyads emitting in the 600 - 700 nm region by using Nile Red acceptors. Thus fluorescein- and BODIPY-based donors were linked to these acceptors via alkynes or triazoles. The product dyads (1 - 5) have energy transfer efficiencies of 77 - 97% in organic media.
该项目旨在通过使用尼罗红受体来开发在600 - 700纳米区域发光的能量转移二元体系。因此,基于荧光素和硼二吡咯的供体通过炔烃或三唑与这些受体相连。产物二元体系(1 - 5)在有机介质中的能量转移效率为77 - 97%。