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Studies of Surfactant in Photogalvanic Cell for Solar Energy Conversion and Storage 被引量:2

Studies of Surfactant in Photogalvanic Cell for Solar Energy Conversion and Storage
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摘要 The photogalvanic effect was studied in photogalvanic cell containing orange G as Photosensitizer, sodium lauryl sulphate and EDTA as reducing agent. The photo-outputs with EDTA are higher for Solar Energy Conversion and Storage. The current-voltage relations of the cell have been measured in the dark and light under both forward and reverse direction. The photo potential and photocurrent generated was found to be 960.0 mV and 350.0 μA, respectively. The observed conversion efficiency was 1.52% fill factor and the maximum power of cell was 0.47 μA and 158.9 μW. The storage capacity of the cell was 80.0 minutes in dark. A mechanism was proposed for the generation of photocurrent in photo galvanic cell. The photogalvanic effect was studied in photogalvanic cell containing orange G as Photosensitizer, sodium lauryl sulphate and EDTA as reducing agent. The photo-outputs with EDTA are higher for Solar Energy Conversion and Storage. The current-voltage relations of the cell have been measured in the dark and light under both forward and reverse direction. The photo potential and photocurrent generated was found to be 960.0 mV and 350.0 μA, respectively. The observed conversion efficiency was 1.52% fill factor and the maximum power of cell was 0.47 μA and 158.9 μW. The storage capacity of the cell was 80.0 minutes in dark. A mechanism was proposed for the generation of photocurrent in photo galvanic cell.
出处 《Advances in Chemical Engineering and Science》 2017年第2期125-136,共12页 化学工程与科学期刊(英文)
关键词 Orange-G NaLS (Surfactant) PHOTOPOTENTIAL PHOTOCURRENT CONVERSION Efficiency Orange-G NaLS (Surfactant) Photopotential Photocurrent Conversion Efficiency
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