Institute of Physical Chemistry, Polish Academy of Sciences, Kasprzaka 44/52, 01-224 Warsaw, Poland.
Phys Chem Chem Phys. 2010 Aug 21;12(31):8804-9. doi: 10.1039/b927232a. Epub 2010 Jun 7.
Crystal violet lactone (CVL) in solution displays unusually broad (FWHM > 9100 cm(-1)) dual fluorescence with the characteristics of white light. The emission combines a blue CT band from a local chromophore with an orange CT band from an intramolecular exciplex formed adiabatically at appropriate medium polarity. The fluorescence spectrum can be controlled by solvent polarity to yield tuneable emission colours in a broad range of coordinates in the CIE chromaticity diagram including the white region. We show that such dual emission is a general property of CVL-like D-A structures built on sp(3) carbon atoms. The dependence of excited state energetics on molecular structure allows the prediction of width, shape and other parameters of the dual fluorescence spectrum, and so enables the engineering and customised design of white fluorophores. The photophysics-structure relationship found for CVL and its analogues can be generalized into a novel concept of white light generation by small molecules. These D-A systems are studied as a template basis for design and development of white fluorophores.
溶液中的晶体紫内酯 (CVL) 显示出异常宽的(半峰全宽 > 9100 cm(-1)) 双荧光,具有白光的特征。发射结合了来自局部发色团的蓝色 CT 带和来自适当介质极性下绝热形成的分子内激基复合物的橙色 CT 带。荧光光谱可以通过溶剂极性来控制,在 CIE 色度图的宽坐标范围内产生可调谐的发射颜色,包括白色区域。我们表明,这种双发射是基于 sp(3)碳原子的 CVL 类似 D-A 结构的普遍特性。激发态能量对分子结构的依赖性允许预测双荧光光谱的宽度、形状和其他参数,从而能够对白色荧光团进行工程设计和定制设计。在 CVL 及其类似物中发现的光物理-结构关系可以推广为小分子产生白光的新概念。这些 D-A 系统被研究作为设计和开发白色荧光团的模板基础。