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Dithiafulvene-based organic sensitizers using pyridine as the acceptor for dye-sensitized solar cells
writer:Jun Cheng; Yaxiong Cao; Xiaozhong Liang; Jingxia Zheng; Fang Zhang; Shuxian Wei; Xiaoqing Lu; S
keywords:Electrochemical techniques,Organic compounds,Chemical synthesis,Optical materials
source:期刊
specific source:Mater. Chem. Phys.
Issue time:2017年
Three dithiafulvene-based metal-free organic sensitizers all using pyridine as the acceptor but with different π-bridges of phenyl (DTF-Py1), thienyl (DTF-Py2) and phenyl-thienyl (DTF-Py3) have been designed, synthesized and used as photosensitizers for dye-sensitized solar cells (DSCs). Introducing thienyl unit into the π-bridge, as well as extension of the π-bridge can dramatically improve their light harvesting ability and suppress the electron recombination, thus uplifting the performance of DSCs. The overall power conversion efficiency of DSC based on DTF-Py3 shows the highest efficiency of 2.61% with a short-circuit photocurrent density of 7.99 mA cm?2, an open-circuit photovoltage of 630 mV, and a fill factor of 0.52, under standard global AM 1.5 solar light condition. More importantly, the long-term stability of the DTF-Py3 based DSCs under 500 h light-soaking has been demonstrated.