有机太阳能电池
组分(热力学)
材料科学
带隙
有机成分
光电子学
工程物理
化学
物理
环境化学
聚合物
复合材料
热力学
作者
Bommaramoni Yadagiri,K. Narayanaswamy,Vinay Kumar,Hemalatha Maricherla,Mahesh Kumar Ravva,Surya Prakash Singh,Ganesh D. Sharma
标识
DOI:10.1002/solr.202400749
摘要
In order to attain high performance in single‐component organic solar cells (SCOSCs), it requires the designing of light‐harvesting structures that can absorb light across a wide range from visible to near‐infrared (NIR) wavelengths. In this investigation, two novel dyad materials, denoted as SPS‐BF‐Full and SPS‐BT‐Full are designed and synthesized, consisting of covalently linked benzofuran (BF) and benzothiophene (BT) functionalized thiophene–diketopyrrolopyrrole (TDPP) as donor and N‐methyl fullero[60]pyrrolidine as the acceptor, respectively. The incorporation of a phenyl bridge between TDPP and fullero[60]pyrrolidine enhances light absorption in SPS‐BF‐Full and SPS‐BT‐Full, resulting to a high short‐circuit density ( J SC ). Consequently, the SCOSCs utilizing SPS‐BT‐Full and SPS‐BF‐Full attained overall power conversion efficiency (PCE) of 6.28 and 7.35%, respectively. The high photovoltaic performance of OSCs utilizing SPS‐BF‐Full is mainly attributed to its higher external quantum efficiency and balanced hole and electron mobility ( μ e / μ h = 1.39), along with imporved charge carrier extraction, revealing more effective charge transport in comparison to SPS‐BT‐Full counterparts.
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