会议论文详细信息
8th International Conference on Physics and its Applications
Modification of circuit module of dye-sensitized solar cells (DSSC) for solar windows applications
Hastuti, S.D.^1 ; Nurosyid, F.^1 ; Supriyanto, A.^1 ; Suryana, R.^1
Department of Physics, Faculty of Mathematics and Natural Sciences, Sebelas Maret University, Jl. Ir. Sutami 36, A Kentingan Surakarta
57126, Indonesia^1
关键词: Alternative energy;    Electrical circuit;    Electrolyte solutions;    External circuits;    Higher efficiency;    Parallel circuits;    Windows application;    Working electrode;   
Others  :  https://iopscience.iop.org/article/10.1088/1742-6596/776/1/012003/pdf
DOI  :  10.1088/1742-6596/776/1/012003
来源: IOP
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【 摘 要 】
This research has been conducted to obtain a modification of circuit producing the best efficiency of solar window modules as an alternative energy for daily usage. Solar window module was constructed by DSSC cells. In the previous research, solar window was created by a single cell of DSSC. Because it had small size, it could not be applied in the manufacture of solar window. Fabrication of solar window required a larger size of DSSC cell. Therefore, in the next research, a module of solar window was fabricated by connecting few cells of DSSC. It was done by using external electrical circuit method which was modified in the formation of series circuit and parallel circuit. Its fabrication used six cells of DSSC with the size of each cell was 1 cm × 9 cm. DSSC cells were sandwich structures constructed by an active layer of TiO2as the working electrode, electrolyte solution, dye, and carbon layer. Characterization of module was started one by one, from one cell, two cells, three cells, until six cells of a module. It was conducted to recognize the increasing efficiency value as the larger surface area given. The efficiency of solar window module with series circuit was 0.06%, while using parallel circuit was 0.006%. Module with series circuit generated the higher voltage as the larger surface area. Meanwhile, module through parallel circuit tended to produce the constant voltage as the larger surface area. It was caused by the influence of resistance within the cable in each module. Module with circuit parallel used a longer cable than module with series circuit, so that its resistance increased. Therefore, module with parallel circuit generated voltage that tended to be constant and resulted small efficiency compared to the module with series circuit. It could be concluded that series external circuit was the best modification which could produce the higher efficiency.
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