三苯胺
色素敏化染料
吩噻嗪
介电谱
卟啉
能量转换效率
光化学
分子内力
材料科学
二面角
化学
电化学
光电子学
有机化学
分子
氢键
物理化学
电极
医学
药理学
电解质
作者
Shengzhong Li,Yushuang Zhang,Shu Mei,Xiangfei Kong,Miao Yang,Zhenguang Hu,Wenjun Wu,Jingwen He,Haijun Tan
标识
DOI:10.1021/acsaem.1c01509
摘要
The molecular engineering of phenylamine- and phenothiazine-based porphyrin dyes is an advisable strategy for high-efficiency dye-sensitized solar cells (DSSC). Herein, we incorporated two and three phenothiazine units into the triphenylamine donor (D) unit of porphyrin dye (T-1) to replace the benzene units, resulting in two novel porphyrin dyes, T-3 and T-4. UV–vis absorption studies revealed that the molar extinction coefficients (ε) on TiO2 films of T-3 and T-4 were significantly higher than T-1, mainly owing to the increased loaded amount. Hence, the T-3- and T-4-devices exhibit higher IPCE and Jsc values. Furthermore, transient PL measurements and electrochemical impedance spectroscopy (EIS) results demonstrate that the electron injection efficiency (ηinj) and electron lifetime (τ) of the T-3-device were the highest. Thus, the T-3-device achieved the highest power conversion efficiency (PCE) of 8.02% (N719, 8.45%) with Voc = 670 mV, Jsc = 16.84 mA cm–2, and FF = 70.02%. Meanwhile, the theoretical calculation studies suggest the smaller dihedral angle between the D unit and porphyrin macrocycle of T-3, leading to a favorable intramolecular charge transfer (ICT) process (t = 1.831, qct = 0.922) compared to that of T-4. These results demonstrate that introducing a different number of phenothiazine units to replace the benzene units of triphenylamine in suitable positions can serve as an effective strategy for developing efficient DSSC.
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