吸光度
酞菁
锌
红外线的
光化学
色素敏化染料
化学
材料科学
无机化学
光学
有机化学
色谱法
物理化学
电极
电解质
物理
作者
Thibaut Baron,Ximena Zárate,Yoan Hidalgo‐Rosa,Michael Zambrano-Angulo,Kevin Mall Haidaraly,Ricardo Pino-Ríos,Yann Pellegrin,Fabrice Odobel,Gloria Cárdenas‐Jirón
摘要
Transparent and colorless solar cells are attractive new photovoltaic devices as they could bring new opportunities to harness sunlight energy and particularly for their integration in windows. In this work, a new zinc phthalocyanine was synthesized and investigated as sensitizer in dye-sensitized solar cell (DSSC) for this purpose. The zinc phthalocyanine features a benzoic acid anchoring group and six thio(4-tertbutylphenyl) substituents in α position of the phtalocyanine. The dye was characterized by absorption and emission spectroscopy and by electrochemistry. The physico-chemical properties show that the dye fulfills the criteria for such an application. A detailed computational study indicates that the electronic communication with TiO 2 conduction is weak owing to the absence of overlapping of the wavefunctions of the dye with those of the TiO 2 semiconductor. The photovoltaic performances of the zinc phthalocyanine were measured in TiO 2 -based DSSC that revealed inefficient electron injection, which certainly can be explained by the weak electronic coupling of the dye with TiO 2 that limits electron injection efficiency. A strategy is proposed to make better-performing sensitizers.
科研通智能强力驱动
Strongly Powered by AbleSci AI