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Comparative study of photosensitizing dyes in photogalvanic cells for solar energy conversion and storage Brij-35-diethylenetriamine pentaacetic acid (DTPA) system

By: Publication details: ene. 2009Description: 7 p. ; 1024-1031 In: Energy & fuels 23Summary: Transcripción del resúmen publicado por el autor: The photogalvanic effect has been studied in three systems using photogalvanic cells: Brij-35-diethylenetriamine pentaacetic acid (DTPA)-Safranine, Brij-35-DTPA-Bismark Brown, and Brij-35-DTPA-Methyl Orange systems. The photopotential and photocurrent generated by these systems were 842, 786, and 625 mV and 155, 115, and 95 µA, respectively. The effects of different parameters on the electrical outputs of the cell have been observed, and current-voltage characteristics of the cell have been studied. A mechanism has been proposed for the generation of photocurrent in photogalvanic cells. The conversion efficiencies for Safranine, Bismark Brown, and Methyl Orange were 0.6438, 0.5192, and 0.2707%, and storage capacities were 122, 117, and 94 min, respectively.
Item type: Artículo de Revista
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Biblioteca Alejandro Angel Bulgheroni Not for loan 200045060

Transcripción del resúmen publicado por el autor: The photogalvanic effect has been studied in three systems using photogalvanic cells: Brij-35-diethylenetriamine pentaacetic acid (DTPA)-Safranine, Brij-35-DTPA-Bismark Brown, and Brij-35-DTPA-Methyl Orange systems. The photopotential and photocurrent generated by these systems were 842, 786, and 625 mV and 155, 115, and 95 µA, respectively. The effects of different parameters on the electrical outputs of the cell have been observed, and current-voltage characteristics of the cell have been studied. A mechanism has been proposed for the generation of photocurrent in photogalvanic cells. The conversion efficiencies for Safranine, Bismark Brown, and Methyl Orange were 0.6438, 0.5192, and 0.2707%, and storage capacities were 122, 117, and 94 min, respectively.



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