Kim Dongho, Osuka Atsuhiro
National Creative Research Initiatives Center for Ultrafast Optical Characteristics Control and Department of Chemistry, Yonsei University, Seoul 120-749, Korea.
Acc Chem Res. 2004 Oct;37(10):735-45. doi: 10.1021/ar030242e.
On the basis of the Ag(I)-promoted coupling reaction of Zn(II) 5,15-diaryl porphyrin that gave a meso-meso-linked diporphyrin, we developed a variety of directly linked porphyrin arrays including linear, windmill, gridlike, cyclic, and box architectures. Electronic and excitonic interactions are thus fine tuned by placing porphyrin chromophores in well-defined arrangements. Photoexcited-state dynamics of these porphyrin arrays, as revealed by various ultrafast laser-based measurements, are pertinent to photosynthetic light-harvesting antenna in terms of very efficient excitation energy hopping over many porphyrins and lack of a defect that acts as energy sink. The conformational flexibility of a meso-meso-linked diporphyrin has also been used for the fine tuning of excitonic interactions as demonstrated by strapped meso-meso diporphyrins and reversible switching of energy transfer in a triporphyrin. Triply linked porphyrin arrays have also been explored, which exhibit an exceptionally low HOMO-LUMO gap as a result of a fully conjugated pi electronic system over a coplanar platform.
基于锌(II)5,15 - 二芳基卟啉的银(I)促进偶联反应生成了中位 - 中位连接的双卟啉,我们开发了多种直接连接的卟啉阵列,包括线性、风车形、网格状、环状和盒状结构。通过将卟啉发色团以明确的排列方式放置,从而对电子和激子相互作用进行了精细调节。通过各种基于超快激光的测量所揭示的这些卟啉阵列的光激发态动力学,在非常高效的激发能在许多卟啉上跳跃且不存在作为能量陷阱的缺陷方面,与光合光捕获天线相关。中位 - 中位连接的双卟啉的构象灵活性也已用于激子相互作用的精细调节,如带状中位 - 中位双卟啉以及三卟啉中能量转移的可逆切换所证明的那样。还探索了三重连接的卟啉阵列,由于在共面平台上存在完全共轭的π电子系统,其表现出异常低的最高已占分子轨道 - 最低未占分子轨道能隙。