Segura José L, Martin Nazario, Guldi Dirk M
Departamento de Quimica Organica, Facultad de Quimica, Universidad Complutense, E-28040, Madrid, Spain.
Chem Soc Rev. 2005 Jan;34(1):31-47. doi: 10.1039/b402417f. Epub 2004 Dec 6.
This tutorial review surveys recent advances in the field of C60/pi-conjugated oligomer donor-acceptor ensembles. In particular, different synthetic strategies are discussed that were developed to link pi-conjugated oligomers, as versatile photoexcited state electron donors, to C60. We highlight relationships between the nature/structural aspects of pi-conjugated donor systems and a variety of physico-chemical features. Modifications of the oligomeric components are discussed under aspects of tailoring (i) the absorption cross-section of the chromophore in the visible region, (ii) the oxidation potential of the oligomeric donor moiety, (iii) the size, shape, or chemical makeup of the oligomer, and (iv) the stabilization of the charge-separated radical ion pairs. In the final section, the applicability of selected materials for the fabrication of photovoltaic devices is analyzed.
本教程综述了C60/π共轭低聚物供体-受体体系领域的最新进展。特别讨论了为将作为通用光激发态电子供体的π共轭低聚物与C60连接而开发的不同合成策略。我们强调了π共轭供体体系的性质/结构方面与各种物理化学特性之间的关系。在定制(i)发色团在可见光区域的吸收截面、(ii)低聚物供体部分的氧化电位、(iii)低聚物的尺寸、形状或化学组成以及(iv)电荷分离自由基离子对的稳定性等方面讨论了低聚物组分的修饰。在最后一部分,分析了所选材料在制造光伏器件方面的适用性。