Key Laboratory of Photochemical Conversion and Optoelectronic Materials, Technical Institute of Physics and Chemistry, Chinese Academy of Sciences, Beijing 100190, China.
Chem Asian J. 2010 May 3;5(5):992-1005. doi: 10.1002/asia.200900653.
In natural photosynthetic systems, a large array of chlorophyll molecules surrounds a single reaction center and channels the absorbed solar energy to the reaction center, ultimately resulting in ATP production. Dendrimers are well-defined tree-like macromolecules having numerous chain ends all emanating from a single core, which makes them an attractive candidate for light-harvesting applications. More importantly, their synthesis is controllable and the accurate positioning of chromophores can be achieved. Photoinduced electron transfer and energy transfer are main processes involved in photosynthesis. Studies on these processes in dendritic systems are important for the future application of dendrimers in optoelectronic devices. In this Focus Review we will discuss recent advances of light-harvesting dendrimers and emphasize the energy transfer and electron transfer characteristics in these systems.
在自然光合作用系统中,大量的叶绿素分子围绕着一个单一的反应中心,将吸收的太阳能输送到反应中心,最终导致 ATP 的产生。树状大分子是具有许多链末端的明确的树状大分子,这些链末端都从单个核心发出,这使它们成为光收集应用的有吸引力的候选者。更重要的是,它们的合成是可控的,可以实现发色团的精确定位。光诱导电子转移和能量转移是光合作用中涉及的主要过程。在树突状系统中对这些过程的研究对于树突状聚合物在光电设备中的未来应用非常重要。在这篇重点综述中,我们将讨论光收集树突状聚合物的最新进展,并强调这些系统中的能量转移和电子转移特性。