Increasing photogalvanic solar power generation and storage capacity of brilliant cresyl blue by employing surfactant and natural sunlight

Pooran Koli
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Abstract

Photogalvanic solar cells are solar energy harvesting devices having inherent power storage capacity. Electrical output as 590 μA current, 183.3 μW power, and 1.95% efficiency is reported for the fructose/brilliant cresyl blue dye (a reductant/photosensitizer couple) at low illumination intensity. For exploring the feasibility of these cells for application, the reported electrical output needs further enhancement with the demonstration of workability in natural sunlight. With this aim, the modified fructose reductant-NaOH alkali-brilliant cresyl blue dye photosensitizer photogalvanic system has been studied using a surfactant with a very small Pt electrode in natural sunlight. Abruptly enhanced current (2300 μA), power (661 μW), and efficiency (8.26%) have been observed in the modified study. The study has shown that photogalvanic cells can work at high illumination intensity adhering to similar basic principles, which are apt for cells working at artificial and low-intensity illumination.

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利用表面活性剂和自然光,提高光电太阳能发电和亮甲酰蓝的储存能力
光电太阳能电池是一种具有固有能量存储能力的太阳能收集装置。在低照度下,果糖/亮甲酰蓝染料(还原剂/光敏剂偶联)的输出电流为590 μA,功率为183.3 μW,效率为1.95%。为了探索这些电池应用的可行性,报告的电输出需要进一步提高,并证明在自然阳光下的可加工性。为此,在自然光照下,采用表面活性剂和极小Pt电极,研究了改性果糖还原剂-氢氧化钠碱-亮甲酰蓝染料光敏剂光电体系。在改进后的研究中,电流(2300 μA)、功率(661 μW)和效率(8.26%)显著增强。研究表明,光原电池可以在高照明强度下工作,其基本原理与在人工和低强度照明下工作的电池相似。
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