School of Materials Science and Engineering, Harbin Institute of Technology, Harbin, 150001, China.
Macromol Rapid Commun. 2018 Jul;39(14):e1700697. doi: 10.1002/marc.201700697. Epub 2018 Jan 4.
Polymer solar cells have received considerable attention due to the advantages of low material cost, tunable band gaps, ultralight weight, and high flexible properties, and they have been a promising organic photovoltaic technology for alternative non-renewable fossil fuels for the past decade. Inspired by these merits, numerous state-of-the-art organic photovoltaic materials have been constructed. Among them, indaceno-based polymer materials have made an impact in obtaining an impressive power conversion efficiency of more than 11%, which shows the momentous potential of this class of materials for commercial applications. In this review, recent progress of indaceno-based organic polymer solar cells are reviewed, and the structure-property device performance correlations of the reported materials are highlighted. Then, common regularities of these successful cases are collected, and encouraging viewpoints on the further development of more exciting indaceno-based organic photovoltaic materials are provided.
聚合物太阳能电池由于具有材料成本低、带隙可调、超轻重量和高柔韧性等优点,受到了广泛关注,并且在过去十年中已经成为一种很有前途的有机光伏技术,可替代不可再生的化石燃料。受这些优点的启发,已经构建了许多最先进的有机光伏材料。在这些材料中,基于茚并二萘嵌苯的聚合物材料在获得超过 11%的令人印象深刻的功率转换效率方面取得了突破,这表明此类材料在商业应用方面具有重要的潜力。在本综述中,回顾了基于茚并二萘嵌苯的有机聚合物太阳能电池的最新进展,并强调了所报道材料的结构-性能-器件性能相关性。然后,收集了这些成功案例的常见规律,并对进一步开发更令人兴奋的基于茚并二萘嵌苯的有机光伏材料提供了有启发性的观点。