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首页> 外文期刊>Journal of Energy Technologies and Policy >Solar Energy Conversion and Storage: Rose Bengal-Triton X-100 by Photogalvanic Cell
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Solar Energy Conversion and Storage: Rose Bengal-Triton X-100 by Photogalvanic Cell

机译:太阳能转换和储存:光血陀细胞玫瑰Bengal-Triton X-100

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Photogalvanic cells are photoelectrochemical devices involving ions as mobile charges moving in solution through diffusion process. These cells are capable of solar power generation at low cost with inherent storage capacity. This property of photogalvanic cell needs to be exploited as this technology is cleaner and promising for application in daily life. In our work, Rose Bengal is used as photosensitizer with oxalic acid as reductant and triton as surfactant for photoelectrochemical conversion of solar energy into electrical energy. The photopotential and photocurrent generated were 289.0 mV and 29.1 μA, respectively. The maximum power of the cell was 8.409 μW. The observed conversion efficiency was 0.023 % and fill factor was determined as 0.293 against the maximum theoretical value 1.0. The photogalvanic cell can work for 45.0 min in dark after irradiation for 21.0 min, i.e. the storage capacity of the photogalvanic cell is 45 min. The effect of different parameters on electrical output of the cell was studied and a mechanism has also been proposed for the generation of photocurrent in photogalvanic cell.
机译:光血陀细胞是涉及离子作为通过扩散过程在溶液中移动的移动电荷的光电化学器件。这些电池能够以低成本的具有固有的存储容量来实现太阳能发电。由于这种技术在日常生活中,需要利用光致血管细胞的这种特性。在我们的工作中,罗斯孟加拉邦用作具有草酸的光敏剂,作为还原剂和Triton作为光电化学转换到电能的光电化学转换的表面活性剂。产生的光环绕和光电流分别为289.0mV和29.1μA。电池的最大功率为8.409μW。观察到的转化效率为0.023%,填充因子抵抗最大理论值1.0的0.293。在照射21.0分钟后,光致血管电池可以在黑暗中工作45.0分钟,即光血管常见细胞的储存能力为45分钟。研究了不同参数对电池电输出的影响,并且还提出了用于光电流在光电流中的机理。

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