Molecular Photonics Laboratory, School of Chemistry, Newcastle University, Newcastle upon Tyne, UKNE1 7RU.
Photochem Photobiol Sci. 2010 Jul 30;9(7):1009-17. doi: 10.1039/c0pp00039f. Epub 2010 May 26.
A molecular dyad, , has been prepared that incorporates a boron dipyrromethene (Bodipy) group functionalized at the meso position with an anthracenyl unit. Emission from the dyad contains contributions from both localized fluorescence from the Bodipy unit and exciplex-like emission associated with an intramolecular charge-transfer state. The peak position, intensity and lifetime of this exciplex emission are solvent dependent and the shift in the emission maximum shows a linear relationship to the solvent polarity function (Deltaf). The calculated dipole moment for the exciplex is 22.5 +/- 2.2 D. The radiative rate constant (k(RAD)) for exciplex emission decreases progressively with increasing solvent polarity. In this latter case, k(RAD) shows an obvious dependence on the energy gap between the exciplex state and the first-excited singlet state resident on the Bodipy unit. The emission characteristics for dissolved in perfluorooctane are used to characterize the refractive index and dielectric constant of the solvent.
一种分子偶联物 已经被制备出来,它在中位处用蒽基单元官能化了硼二吡咯亚甲基(Bodipy)基团。偶联物的发射包含来自 Bodipy 单元的局域荧光和与分子内电荷转移态相关的类似激基复合物的发射的贡献。这种激基复合物发射的峰位置、强度和寿命取决于溶剂,并且发射最大值的位移显示出与溶剂极性函数(Deltaf)的线性关系。激基复合物的偶极矩计算值为 22.5 +/- 2.2 D。激基复合物发射的辐射速率常数(k(RAD))随着溶剂极性的增加逐渐减小。在后一种情况下,k(RAD)明显取决于激基复合物态与位于 Bodipy 单元上的第一激发单线态之间的能隙。在全氟辛烷中溶解的 的发射特性用于表征溶剂的折射率和介电常数。