Institute of Physical Chemistry, Christian-Albrechts-University Kiel, Olshausenstr. 40, 24098 Kiel, Germany.
Phys Chem Chem Phys. 2019 Jan 23;21(4):2080-2092. doi: 10.1039/c8cp05054f.
The excited-state dynamics of a donor-acceptor dyad composed of 1-propyl-2-pyridinyl-benzimidazole (PPBI) as donor and the photochromic molecular switch diphenylnaphthopyran (DPNP) as acceptor linked via an ester bridge has been investigated by a combination of static and time-resolved spectroscopies and quantum chemical calculations. The UV absorption spectrum of the dyad is virtually identical to the sum of the spectra of its individual constituents, indicating only weak electronic coupling between the donor and acceptor in the electronic ground state. After selective photoexcitation of the PPBI chromophore in the dyad at λpump = 310 nm, however, a fast electronic energy transfer (EET) from the donor to the acceptor is observed, by which the lifetime of the normally long-lived excited state of PPBI is reduced to a few ps. Enabled by the EET, the acceptor switches from its ring-closed naphtopyran form to its ring-opened merocyanine form. The singular value decomposition-based global analyses of the measured femtosecond time-resolved transient absorption spectra of the dyad and its two building blocks as reference compounds allowed us to determine a value for the EET time constant in the dyad of τ = 2.90 ± 0.60 ps. For comparison, Förster theory predicts characteristic FRET times between 1.2 ps ≤ τ ≤ 4.2 ps, in good agreement with the experimental result.
通过静态和时间分辨光谱以及量子化学计算的组合,研究了由 1-丙基-2-吡啶基苯并咪唑(PPBI)作为供体和光致变色分子开关二苯基萘并吡喃(DPNP)作为受体通过酯桥连接组成的给体-受体二聚体的激发态动力学。二聚体的紫外吸收光谱几乎与它的各个组成部分的光谱的总和相同,这表明在电子基态下供体和受体之间只有微弱的电子耦合。然而,在 310nm 处选择性地激发二聚体中的 PPBI 发色团后,观察到从供体到受体的快速电子能量转移(EET),这使得 PPBI 的通常长寿命激发态的寿命缩短到几个 ps。通过 EET,受体从其闭环萘并吡喃形式转换为其开环的硫靛形式。基于奇异值分解的全局分析测量的二聚体及其两个构建块的飞秒时间分辨瞬态吸收光谱作为参考化合物,使我们能够确定二聚体中的 EET 时间常数值为 τ = 2.90 ± 0.60 ps。相比之下,Förster 理论预测的特征 FRET 时间在 1.2 ps ≤ τ ≤ 4.2 ps 之间,与实验结果吻合良好。