Department of Chemistry, Wichita State University, 1845 Fairmount, Wichita, Kansas 67260-0051, USA.
J Am Chem Soc. 2009 Oct 21;131(41):14646-7. doi: 10.1021/ja9067113.
An elegant method of self-assembly for modification of a TiO(2) surface using coordinating ligands followed by immobilization of variety of sensitizers and a dyad is reported. This highly versatile method, in addition to testing the photoelectrochemical behavior of different zinc tetrapyrroles, allowed the use of fairly complex structures involving more than one donor entity. Utilization of the zinc porphyrin-ferrocene dyad markedly improved the current-voltage performance of the photoelectrochemical cell through an electron transfer-hole migration mechanism. Incident photon-to-current efficiency values up to 37% were obtained for the electrode modified with the dyad, signifying the importance of photocells built on the basis of biomimetic principles for efficient harvesting of solar energy.
本文报道了一种使用配位配体对 TiO(2) 表面进行修饰的优雅自组装方法,然后固定各种敏化剂和双联体。这种高度通用的方法除了测试不同锌四吡咯的光电化学行为外,还允许使用涉及一个以上供体实体的相当复杂的结构。通过电子转移-空穴迁移机制,使用锌卟啉-二茂铁双联体显著改善了光电化学池的电流-电压性能。用双联体修饰的电极的光电流效率值高达 37%,这表明基于仿生原理构建的光电池对于高效收集太阳能非常重要。