Istituto per la Sintesi Organica e Fotoreattivita' (ISOF), CNR, Via P. Gobetti 101, 40129 Bologna, Italy.
Photochem Photobiol Sci. 2013 Dec;12(12):2137-45. doi: 10.1039/c3pp50211b.
A dyad (PI0-PIa) made of a linear (PI0) and an angular (PIa) perylene biscarboximide is synthesized and its spectroscopic, electrochemical and photophysical properties investigated in solvents of various polarity. PIa is characterized by a high intersystem crossing. The spectroscopy and electrochemistry data point to a modest electronic coupling. LUMO-LUMO electron transfer from the singlet excited state PI0-¹PIa is thermodynamically feasible in polar solvents but its occurrence is precluded by a very fast energy transfer to yield ¹PI0-PIa, k(en) ≥ 10(11) s(-1). A HOMO-HOMO electron transfer in the latter state in polar solvents is precluded by the poor driving force, the reaction being unable to compete with the radiative deactivation of the excited state. The efficient energy transfer process is quantitatively examined in the frame of current theories and ascribed to a dipole-dipole (Förster) mechanism.
一对由线性(PI0)和角型(PIa)苝二酰亚胺组成的 dyad(PI0-PIa)被合成,并在不同极性溶剂中研究了其光谱、电化学和光物理性质。PIa 的特点是高系间窜越。光谱和电化学数据表明电子耦合适度。从单重激发态 PI0-¹PIa 到 LUMO-LUMO 的电子转移在极性溶剂中热力学上是可行的,但由于非常快的能量转移到生成 ¹PI0-PIa,k(en)≥10(11)s(-1),其发生受到阻碍。在极性溶剂中,在后一种状态下的 HOMO-HOMO 电子转移受到驱动力差的阻碍,反应无法与激发态的辐射去活化竞争。在当前理论框架内定量研究了有效的能量转移过程,并归因于偶极-偶极(Förster)机制。