Spectroscopy Laboratory for Functional pi-Electronic Systems and Department of Chemistry, Yonsei University, Seoul 120-749, Korea.
J Phys Chem B. 2010 Jul 22;114(28):9157-64. doi: 10.1021/jp103767m.
meso-Pyridine-appended alkynylene-bridged zinc(II) porphyrin dimers D2 and D4 assemble spontaneously, in noncoordinating solvents such as toluene, into tetrameric porphyrin boxes B2 and B4, respectively. Interestingly, the formation of Bn from Dn leads to the two kinds of self-assembled porphyrin boxes constructed by planar and orthogonal conformers, respectively. Excitation energy migration processes within these assemblies have been investigated in detail by using both steady-state and time-resolved spectroscopic methods. The pump-power dependence on the femtosecond transient absorption decay profiles is directly associated with the excitation energy migration process within the Bn boxes, where the exciton-exciton annihilation time is well-described in terms of the Foster-type incoherent energy hopping model. Consequently, the excitation energy hopping rates in porphyrin boxes constructed by planar and orthogonal conformers have been estimated to be (approximately 1.2 ps)(-1) and (approximately 1 ps)(-1), respectively. Furthermore, the porphyrin boxes constructed by orthogonal conformers show additional slow excitation energy hopping rates of (approximately 12 ps)(-1). Overall, the dihedral angle in the constituent dimers is a key factor to control the energy transfer efficiency for the fabrication of artificial light-harvesting complexes using conjugated porphyrin dimer systems.
间吡啶取代的炔烃桥联锌(II)卟啉二聚体 D2 和 D4 在非配位溶剂(如甲苯)中自发组装成四聚卟啉盒 B2 和 B4。有趣的是,Dn 形成 Bn 导致分别由平面和正交构象构成的两种自组装卟啉盒的形成。通过使用稳态和时间分辨光谱方法详细研究了这些组装体中的激发能量迁移过程。泵浦功率对飞秒瞬态吸收衰减曲线的依赖性与 Bn 盒内的激发能量迁移过程直接相关,其中激子-激子湮灭时间很好地用福斯特型非相干能量跳跃模型来描述。因此,由平面和正交构象构成的卟啉盒中的激发能跳跃率分别估计为(约 1.2 ps)(-1)和(约 1 ps)(-1)。此外,由正交构象构成的卟啉盒还显示出额外的缓慢激发能跳跃率(约 12 ps)(-1)。总的来说,组成二聚体的二面角是控制使用共轭卟啉二聚体系统制备人工光捕获复合物的能量转移效率的关键因素。