Instituto de Química de São Carlos, Universidade de São Paulo, 13560-590, São Carlos-SP, Brasil.
J Phys Chem A. 2010 Dec 2;114(47):12384-90. doi: 10.1021/jp108168f. Epub 2010 Nov 9.
Polyfluorene end-capped with N-(2-benzothiazole)-1,8-naphthalimide (PF-BNI) is a highly fluorescent material with fluorescence emission modulated by solvent polarity. Its low energy excited state is assigned as a mixed configuration state between the singlet S(1) of the fluorene backbone (F) with the charge transfer (CT) of the end group BNI. The triexponential fluorescence decays of PF-BNI were associated with fast energy migration to form an intrachain charge-transfer (ICCT) state, polyfluorene backbone decay, and ICCT deactivation. Time-resolved fluorescence anisotropy exhibited biexponential relaxation with a fast component of 12-16 ps in addition to a slow one in the range 0.8-1.4 ns depending on the solvent, showing that depolarization occurs from two different processes: energy migration to form the ICCT state and slow rotational diffusion motion of end segments at a longer time. Results from femtosecond transient absorption measurements agreed with anisotropy decay and showed a decay component of about 16 ps at 605 nm in PF-BNI ascribed to the conversion of S(1) to the ICCT excited state. From the ratio of asymptotic and initial amplitudes of the transient absorption measurement, the efficiency of intrachain ICCT formation is estimated in 0.5, which means that, on average, half of the excited state formed in a BNI-(F)(n)-BNI chain with n = 32 is converted to its low energy intrachain charge-transfer (ICCT) state.
聚芴末端封端 N-(2-苯并噻唑)-1,8-萘酰亚胺(PF-BNI)是一种具有荧光发射的高度荧光材料,其荧光发射可通过溶剂极性进行调制。其低能量激发态被分配为芴骨架的单重态 S(1)(F)与端基 BNI 的电荷转移(CT)之间的混合构象态。PF-BNI 的三指数荧光衰减与快速能量迁移有关,以形成分子内电荷转移(ICCT)态、聚芴骨架衰减和 ICCT 失活。时间分辨荧光各向异性表现出双指数弛豫,除了在 0.8-1.4 ns 范围内的慢分量外,还具有 12-16 ps 的快分量,这取决于溶剂,表明去极化来自两个不同的过程:能量迁移以形成 ICCT 态和末端片段的缓慢旋转扩散运动在较长时间内。飞秒瞬态吸收测量的结果与各向异性衰减一致,并在 PF-BNI 中在 605nm 处显示出约 16 ps 的衰减分量,归因于 S(1)向 ICCT 激发态的转换。从瞬态吸收测量的渐近和初始幅度的比值,可以估计分子内 ICCT 形成的效率为 0.5,这意味着,在具有 n=32 的 BNI-(F)(n)-BNI 链中,形成的激发态平均有一半被转化为其低能量分子内电荷转移(ICCT)态。