固态染料敏化太阳能电池并网与离网技术优化比较研究

Salman A. Chowdhury, M. M. Hossain, M. Sayem, Md. Rafiqul Islam Sheikh
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摘要

本文对固态染料敏化太阳能电池(SSDSSCs)的性能进行了分析,重点研究了其在热带地区的并网和离网运行。研究发现,不同组成的电极(如TiO2和ZnO)、SSDSSCs薄膜的表面形貌、使用不同类型的染料作为光敏剂、使用纳米棒/纳米颗粒作为光阳极,都对应着SSDSSCs中不同的光电转换效率(pce)。由于SSDSSCs不存在传统液体基染料敏化太阳能电池(DSSCs)中普遍存在的泄漏和腐蚀相关问题,因此它具有降低维护成本和延长系统寿命的潜力,然而到目前为止,SSDSSCs与传统DSSCs相比,其pce较低。2013年,使用碘化铅钙钛矿(CH3NH3PM3)颜料敏化的固态介孔TiO2太阳能电池创造了约15%的最高效率记录[1-4],2014年初进一步提高到16.7%[26]。精心选择高光敏染料,结合适当的纳米管光子晶体,可以优化SSDSSCs在热带地区的效率。
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A comparative study of optimization of solid state dye sensitized solar cell technologies for power grid integration and off-grid operation
In this paper, the performance analyses of Solid State Dye Sensitized Solar Cells (SSDSSCs) are carried out with power grid integration and off-grid operation in the intertropical region being the main focus. It has been observed that electrodes of different compositions such as: TiO2 and ZnO, surface morphology of the thin films used in SSDSSCs, use of different types of dyes as photo sensitizers, use of Nanorods/Nanoparticles as photoanodes — all correspond to different photoelectric conversion efficiencies (PCEs) in SSDSSCs. As the SSDSSCs are free of leakage and corrosion related problems prevalent in conventional liquid-based Dye Sensitized Solar Cells (DSSCs), it has the potential to lower the maintenance cost and improving longevity of a system, so far however SSDSSCs suffer from low PCEs when compared with conventional DSSCs, with a maximum efficiency record of approximately 15 per cent set in 2013 by using solid-state mesoscopic TiO2 solar cells sensitized with lead iodide perovskite (CH3NH3PM3) pigments[1–4], in early 2014 which was further lifted to 16.7 per cent[26]. Careful selection of highly photosensitive dye in conjunction with proper nanotube photonic crystals can optimize the efficiency of SSDSSCs for the intertropicsl region.
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