Photogalvanics of the lactic acid reductant - Carmoisine A photosensitizer-CAPB surfactant electrolyte: An optimization, stability and illumination window size effect

Anamika Charan , Pooran Koli , Jyoti Saren
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Abstract

The photogalvanic cells presented in this research work are energy devices having dual role of simultaneous solar power generation and storage. The study of photogalvanics of the Lactic acid reductant-Carmoisine A photosensitizer- Cocamidopropyl betaine (CAPB) surfactant-NaOH alkali has been done under artificial illumination for exploring a most suitable combination of photosensitizer, reductant and surfactant for further enhancing the solar harvesting efficiency. This combination of chemicals (Lactic acid-Carmoisine A-CAPB-NaOH) has shown remarkable improvement in the cell performance. The optimum conditions for cell have also been investigated for optimal cell performance. The electrical output of the cell has been found to depend on the cumulative effect of all cell fabrication variables. The observed power is of the order 1012.70 μW with efficiency 28.84 %. The electrical out-put of the photo-galvanic cells is found almost independent of the size of the illumination window. The initial power generated from the cell was ∼309.0 µW (taken as 100 %), and power at the end of 6th day was ∼0.0009 %. This long term study of the cell in post-illuminated dark conditions shows capacity of the cell to store and release the power over long period of time. Therefore, the Lactic acid reductant-Carmoisine A photosensitizer -CAPB surfactant combination is a good alternative for use in the fabrication of highly efficient photogalvanic cells.
乳酸还原剂-Carmoisine A 光敏剂-CAPB 表面活性剂电解质的光电效应:优化、稳定性和光照窗口大小效应
这项研究工作中提出的光电电池是一种能源设备,具有同时太阳能发电和储存的双重作用。研究人员在人工照明下对乳酸还原剂-羧甲基胂 A 光敏剂-椰油酰胺丙基甜菜碱(CAPB)表面活性剂-NaOH 碱的光电效应进行了研究,以探索光敏剂、还原剂和表面活性剂的最合适组合,从而进一步提高太阳能收集效率。这种化学组合(乳酸-羧基甲酸-CAPB-NaOH)显著提高了电池的性能。为了实现最佳的电池性能,还对电池的最佳条件进行了研究。研究发现,电池的电力输出取决于所有电池制造变量的累积效应。观察到的功率为 1012.70 μW,效率为 28.84%。光栅电池的输出功率几乎与照明窗口的大小无关。电池产生的初始功率为 309.0 μW(取 100%),第 6 天结束时的功率为 0.0009%。对细胞在光照后黑暗条件下的长期研究表明,细胞具有长期储存和释放能量的能力。因此,乳酸还原剂-Carmoisine A 光敏剂-CAPB 表面活性剂组合是用于制造高效光电电池的良好选择。
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