Song Heli, Liu Qingyun, Xie Yongshu
Key Laboratory for Advanced Materials & Institute of Fine Chemicals, School of Chemistry and Molecular Engineering, East China University of Science and Technology, 130 Meilong Rd., Shanghai 200237, P. R. China.
Chem Commun (Camb). 2018 Feb 15;54(15):1811-1824. doi: 10.1039/c7cc09671b.
As a promising low-cost solar energy conversion technique, dye-sensitized solar cells have undergone spectacular development since 1991. For practical applications, improvement of power conversion efficiency has always been one of the major research topics. Porphyrins are outstanding sensitizers endowed with strong sunlight harvesting ability in the visible region and multiple reaction sites available for functionalization. However, judicious molecular design in consideration of light-harvest, energy levels, operational dynamics, adsorption geometry and suppression of back reactions is specifically required for achieving excellent photovoltaic performance. This feature article highlights some of the recently developed porphyrin sensitizers, especially focusing on the systematic dye structure optimization approach in combination with coadsorption and cosensitization methods in pursuing higher efficiencies. Herein, we expect to provide more insights into the structure-performance correlation and molecular engineering strategies in a stepwise manner.
作为一种很有前景的低成本太阳能转换技术,自1991年以来,染料敏化太阳能电池取得了惊人的发展。对于实际应用而言,提高功率转换效率一直是主要研究课题之一。卟啉是出色的敏化剂,在可见光区域具有很强的太阳光捕获能力以及多个可用于功能化的反应位点。然而,要实现优异的光伏性能,特别需要在光捕获、能级、运行动力学、吸附几何结构以及抑制背反应等方面进行明智的分子设计。这篇专题文章重点介绍了一些最近开发的卟啉敏化剂,尤其着重于结合共吸附和共敏化方法的系统染料结构优化方法,以追求更高的效率。在此,我们期望逐步提供更多关于结构-性能相关性和分子工程策略的见解。