Bittner Florian, Oekermann Torsten, Wark Michael
Institute of Physical Chemistry and Electrochemistry, Leibniz University Hannover, Callinstr. 3a, 30167 Hannover, Germany.
Application Center for Wood Fiber Research HOFZET®, Fraunhofer Institute for Wood Research, Wilhelm-Klauditz-Institute WKI, Heisterbergallee 10A, 30453 Hannover, Germany.
Materials (Basel). 2018 Feb 2;11(2):232. doi: 10.3390/ma11020232.
The low-temperature fabrication of flexible ZnO photo-anodes for dye-sensitized solar cells (DSSCs) by templated electrochemical deposition of films was performed in an enlarged and technical simplified deposition setup to demonstrate the feasibility of the scale-up of the deposition process. After extraction of eosin Y (EY) from the initially deposited ZnO/EY hybrid films, mesoporous ZnO films with an area of about 40 cm² were reproducibly obtained on fluorine doped tin oxide (FTO)-glass as well as flexible indium tin oxide (ITO)-polyethylenterephthalate (PET) substrates. With a film thickness of up to 9 µm and a high specific surface area of up to about 77 m²·cm the ZnO films on the flexible substrates show suitable properties for DSSCs. Operative flexible DSSC modules proved the suitability of the ZnO films for use as DSSC photo-anodes. Under a low light intensity of about 0.007 sun these modules achieved decent performance parameters with conversion efficiencies of up to 2.58%. With rising light intensity the performance parameters deteriorated, leading to conversion efficiencies below 1% at light intensities above 0.5 sun. The poor performance of the modules under high light intensities can be attributed to their high series resistances.
通过模板电化学沉积薄膜的方法低温制备用于染料敏化太阳能电池(DSSC)的柔性ZnO光阳极,该过程在放大且技术简化的沉积装置中进行,以证明沉积过程放大的可行性。从最初沉积的ZnO/曙红Y(EY)混合薄膜中提取曙红Y后,在氟掺杂氧化锡(FTO)玻璃以及柔性氧化铟锡(ITO)-聚对苯二甲酸乙二酯(PET)衬底上可重复获得面积约为40 cm²的介孔ZnO薄膜。柔性衬底上的ZnO薄膜厚度高达9 µm,比表面积高达约77 m²·cm,显示出适用于DSSC的特性。可操作的柔性DSSC模块证明了ZnO薄膜用作DSSC光阳极的适用性。在约0.007个太阳的低光照强度下,这些模块实现了良好的性能参数,转换效率高达2.58%。随着光照强度增加,性能参数恶化,在光照强度高于0.5个太阳时转换效率低于1%。模块在高光强下性能不佳可归因于其高串联电阻。