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首页> 外文期刊>Molecules >Towards the Development of Functionalized Polypyridine Ligands for Ru(II) Complexes as Photosensitizers in Dye-Sensitized Solar Cells (DSSCs)
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Towards the Development of Functionalized Polypyridine Ligands for Ru(II) Complexes as Photosensitizers in Dye-Sensitized Solar Cells (DSSCs)

机译:面向染料敏化太阳能电池(DSSC)中光敏剂的Ru(II)配合物功能化聚吡啶配体的开发

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摘要

A number of novel ruthenium(II) polypyridine complexes have been designed and synthesized for use as photosensitizers in dye-sensitized solar cells (DSSCs) due to their rich photophysical properties such as intense absorption, long-lived lifetimes, high emission quantum yields and unique redox characteristics. Many of these complexes exhibit photophysical behavior that can be readily controlled through a careful choice of ligands and/or substituents. With this perspective, we review the design and general synthetic methods of some polypyridine ligands based on bipyridine, phenanthroline, terpyridine and quaterpyridine with/without anchoring groups with a view to correlate functionality of ligand structures with the observed photophysical, electroredox and power conversion efficiency of some examples of Ru(II) polypyridyl complexes that have been reported and particularly used in the DSSCs applications. The main interest, however, is focused on showing the development of new polypyridine ligand materials containing long-range electron transfer motifs such as the alkenyl, alkynyl and polyaromatic donor functionalities.
机译:由于其丰富的光物理特性(例如强吸收,长寿命,高发射量子产率和独特的光化学特性),已经设计并合成了许多新型的钌(II)聚吡啶络合物,用作染料敏化太阳能电池(DSSC)的光敏剂。氧化还原特性。这些络合物中的许多都表现出光物理行为,可以通过仔细选择配体和/或取代基来容易地控制它们。从这个角度出发,我们回顾了一些基于联吡啶,菲咯啉,三联吡啶和四吡啶的聚吡啶配体的设计和一般合成方法,以期使配体结构的功能性与所观察到的光物理,电氧化还原和功率转换效率相关联。 Ru(II)聚吡啶基配合物的一些实例已被报道,尤其是在DSSCs应用中。然而,主要的兴趣集中在显示新的包含长电子转移基序如烯基,炔基和聚芳族供体官能团的聚吡啶配体材料的开发上。

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