Key Laboratory of Polyoxometalate Science of Ministry of Education, Department of Chemistry, Northeast Normal University, Changchun 130024, P. R. China.
Chem Soc Rev. 2019 Jan 2;48(1):260-284. doi: 10.1039/c8cs00559a.
Dye-sensitized solar cells (DSSCs) are the third generation of photovoltaic cells developed by Grätzel and O'Regan. They have the characteristics of low cost, simple manufacturing process, tunable optical properties, and higher photoelectric conversion efficiency (PCE). With an ever increasing energy crisis, there is an urgent need to develop highly efficient, environmentally benign, and energy-saving cell materials. Polyoxometalates (POMs), a kind of molecular inorganic quasi-semiconductor, are promising candidates for use in different parts of DSSCs due to their excellent photosensitivity, redox, and catalytic properties, as well as their relative stability. Following a brief introduction to the development of DSSCs and the potential virtues of POMs in DSSCs, we attempt to make some generalizations about the energy level regulation of POMs that is the underlying theoretical basis for their application in DSSCs, and then we summarize the research progress of POMs in DSSCs in recent years. This is organized in terms of the properties of POMs, namely, electron acceptor, photosensitivity, redox and catalysis, based on the accumulation of our research into POMs over many years. Meanwhile, in view of the fact that the properties of POMs depend primarily on their electronic structural diversity, we keep this point in mind throughout the article with a view to revealing their structure-property relationships. Finally we provide a short summary and remarks on the future outlook. This review may be of interest to synthetic chemists devoted to designing POMs with specific structures, and researchers engaged in the extension of POMs to photoelectric materials.
染料敏化太阳能电池(DSSC)是由 Grätzel 和 O'Regan 开发的第三代光伏电池。它们具有成本低、制造工艺简单、光学性能可调谐以及光电转换效率(PCE)更高的特点。随着能源危机的日益加剧,迫切需要开发高效、环保和节能的电池材料。多金属氧酸盐(POMs)作为一种分子无机准半导体,由于其优异的光敏性、氧化还原和催化性能以及相对稳定性,有望在 DSSC 的不同部分得到应用。在简要介绍 DSSC 的发展以及 POMs 在 DSSC 中的潜在优点之后,我们尝试对 POMs 的能级调节进行一些概括,这是其在 DSSC 中应用的理论基础,然后总结近年来 POMs 在 DSSC 中的研究进展。根据我们多年来对 POMs 的研究积累,按照 POMs 的性质,即电子受体、光敏性、氧化还原和催化,对其进行了分类。同时,鉴于 POMs 的性质主要取决于其电子结构的多样性,我们在整篇文章中都牢记这一点,以期揭示其结构-性质关系。最后,我们对未来展望进行了简短的总结和评论。本综述可能对致力于设计具有特定结构的 POMs 的合成化学家以及将 POMs 扩展到光电材料的研究人员有兴趣。