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A comparative study on the performance of photogalvanic cells with different photosensitizers for solar energy conversion and storage: D-Xylose-NaLS systems

机译:D-木糖-NaLS系统对具有不同光敏剂的光原电池进行太阳能转换和存储性能的比较研究

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摘要

The comparative performance of photogalvanic cells has been studied for solar energy conversion and storage by using Methyl Orange, Rose Bengal, Toluidine Blue and Brilliant Cresyl Blue as different photosensitizers with D-Xylose as reductant and Sodium Lauryl Sulphate (NaLS) as surfactant in the different systems. The photogeneration of photopotential are 890.0, 885.0, 945.0 and 940.0 mV whereas the maximum photocurrent is 625.0, 575.0, 510.0 and 480.0 μA, respectively. The short circuit current or photocurrent at equilibrium is 480.0, 460.0, 430.0 and 440.0 μA, respectively. The observed conversion efficiencies for Methyl Orange, Rose Bengal, Toluidine Blue and Brilliant Cresyl Blue with D-Xylose and Sodium Lauryl Sulphate systems are 1.6245, 1.5261, 1.4323 and 1.1057%, respectively. The fill factors 0.3244, 0.3151, 0.3120, and 0.2408 are experimentally determined at the power point of the cell where the absolute value is 1.0. The photogalvanic cells so developed can work for 160.0, 145.0, 130.0 and 140.0 min in dark if it is irradiated for 180.0, 165.0, 135.0 and 150.0 min, respectively where the percentage of storage capacity of photogalvanic cells are found 87.87%-96.29%. All observed results are the higher among the reported results so far in the literature.
机译:通过使用甲基橙,玫瑰红,甲苯胺蓝和亮甲酚蓝作为不同的光敏剂,以D-木糖作为还原剂,月桂基硫酸钠(NaLS)作为表面活性剂,研究了光电池在太阳能转化和存储方面的比较性能。系统。光电势的光生为890.0、885.0、945.0和940.0 mV,而最大光电流分别为625.0、575.0、510.0和480.0μA。平衡时的短路电流或光电流分别为480.0、460.0、430.0和440.0μA。观察到的甲基橙,玫瑰红,甲苯胺蓝和亮甲酚蓝与D-木糖和十二烷基硫酸钠的转化效率分别为1.6245、1.5261、1.4323和1.1057%。填充系数0.3244、0.3151、0.3120和0.2408在绝对值为1.0的单元的功率点上通过实验确定。如果分别照射180.0、165.0、135.0和150.0分钟,这样开发的光电原电池可以在黑暗中工作160.0、145.0、130.0和140.0分钟,其中光电原电池的存储容量百分比为87.87%-96.29%。迄今为止,所有观察到的结果在文献报道的结果中都较高。

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