Materials Research Institute, Department of Materials Science and Engineering, Northwestern University, Evanston, Illinois 60208, USA.
J Phys Chem B. 2010 Nov 18;114(45):14582-91. doi: 10.1021/jp102359r. Epub 2010 Jul 15.
A series of experiments have been carried out to study the effects of materials quality, surface and interfacial modification, and photon confinement on standard dye-sensitized solar cells. For these studies, both physical and optical characterization of the materials has been performed in detail. In addition, DC and AC impedance measurements along with kinetic charge-transport modeling of experimental results have yielded information on how to systematically optimize the cell efficiency. The same kinetic model has been used to interpret the results of a series of experiments on interfacial modification studies using fluorine etching in combination with TiCl(4) surface treatment. By using specially designed photonic crystals to confine the photons in the cells, it is shown that the best cell efficiency can be further increased by about 13%.
已经进行了一系列实验,以研究材料质量、表面和界面改性以及光子限制对标准染料敏化太阳能电池的影响。对于这些研究,已经详细进行了材料的物理和光学特性分析。此外,直流和交流阻抗测量以及对实验结果的动力学电荷传输建模提供了有关如何系统地优化电池效率的信息。相同的动力学模型也被用于解释使用氟蚀刻结合 TiCl(4) 表面处理进行界面改性研究的一系列实验的结果。通过使用专门设计的光子晶体将光子限制在电池中,结果表明,通过大约 13%的方式可以进一步提高最佳电池效率。