Department of Chemical and Biomolecular Engineering, Sogang University, 1 Sinsu-dong, Mapo-gu, Seoul, Republic of Korea.
Nanoscale. 2013 May 21;5(10):4200-4. doi: 10.1039/c3nr33672g.
We demonstrated the preparation of graphene-embedded 3D inverse opal electrodes for use in DSSCs. The graphene was incorporated locally into the top layers of the inverse opal structures and was embedded into the TiO2 matrix via post-treatment of the TiO2 precursors. DSSCs comprising the bare and 1-5 wt% graphene-incorporated TiO2 inverse opal electrodes were compared. We observed that the local arrangement of graphene sheets effectively enhanced electron transport without significantly reducing light harvesting by the dye molecules. A high efficiency of 7.5% was achieved in DSSCs prepared with the 3 wt% graphene-incorporated TiO2 inverse opal electrodes, constituting a 50% increase over the efficiencies of DSSCs prepared without graphene. The increase in efficiency was mainly attributed to an increase in J(SC), as determined by the photovoltaic parameters and the electrochemical impedance spectroscopy analysis.
我们展示了用于染料敏化太阳能电池(DSSC)的嵌入石墨烯的 3D 反蛋白石电极的制备。通过 TiO2 前体的后处理,将石墨烯局部掺入反蛋白石结构的顶层,并嵌入 TiO2 基质中。比较了包含裸和 1-5wt%石墨烯掺入 TiO2 反蛋白石电极的 DSSC。我们观察到石墨烯片的局部排列有效地增强了电子传输,而不会显著降低染料分子的光捕获。在使用 3wt%石墨烯掺入的 TiO2 反蛋白石电极制备的 DSSC 中,实现了 7.5%的高效率,与不使用石墨烯制备的 DSSC 的效率相比增加了 50%。效率的提高主要归因于 J(SC)的增加,这是通过光伏参数和电化学阻抗谱分析确定的。