会议论文详细信息
2nd Materials Research Society of Indonesia Meeting
From Cell to Module: Fabrication and Long-term Stability of Dye-sensitized Solar Cells
Nursam, N.M.^1 ; Hidayat, J.^1 ; Muliani, L.^1 ; Anggraeni, P.N.^1 ; Retnaningsih, L.^1 ; Idayanti, N.^1
Research Center for Electronics and Telecommunications, Indonesian Institute of Science, Kompleks LIPI Building 20, Cisitu, Bandung
40135, Indonesia^1
关键词: Device efficiency;    Fabrication Technologies;    Long term stability;    Nanocrystalline titanium dioxide;    Photoelectrode;    Poor stability;    Post treatment;    Stable performance;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/214/1/012007/pdf
DOI  :  10.1088/1757-899X/214/1/012007
来源: IOP
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【 摘 要 】

Dye-sensitized solar cell (DSSC), which has been firstly developed by Graetzel et al back in 1991, has attracted a considerable interest since its discovery. However, two of the main challenges that the DSSC technology will have to overcome towards commercialization involve device scale-up and long-term stability. In our group, the fabrication technology of DSSC has been developed from laboratory to module scale over the past few years, nevertheless, the long-term stability has still became a major concern. In this contribution, the long-term DSSC performance in relation to their scale-up from cell to module is investigated. The photoelectrode of the DSSCs were fabricated using nanocrystalline titanium dioxide materials that were subsequently sensitized using ruthenium-based dye. Additionally, TiCl4pre- and post-treatment were carried out to enhance the overall device efficiency. When fabricated as cells, the DSSC prototypes showed relatively stable performance during repeated tests over three months. In order to increase the output power of the solar cells, the DSSCs were then connected in a Z-type series connection to obtain sub-module panels. The DSSC sub-modules exhibit poor stability, particularly as indicated by the significant decrease in the short circuit current (ISC). Herein, the effect of photoelectrode and sealant materials as well as module design are investigated, highlighting their profound influence upon the DSSC efficiency and long-term stability.

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