通过亮黄 + NaLS + 抗坏血酸系统进行太阳能转换和储存的光电效应创新研究

Birama Ram, Hari Prasad, Varsha Rajoriya, K. Genwa
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引用次数: 0

摘要

目的:对 PG 电池的电力输出进行彻底分析并没有引起研究界的好奇心。为了实现为全球提供无污染自然环境以促进可持续发展的目标,本研究报告对 PG 电池进行了深入研究。本研究的目的是利用 PG 电池提高太阳能转化为电能的转化和储存能力,以获得更高的电力输出。方法:PG 电池装置包括两个电极、一个数字 pH 计、一个电阻键、一个碳罐和一个微安计。对专门设计的 H 型 PG 电池进行了研究,以获得更好的电气效果。研究了使用亮黄(BY)+NaLS+抗坏血酸(AA)系统的 PG 电池中的各种太阳能参数。通过调整 PG 电池的各种参数,研究了太阳能的主要影响。在 PG 电池中,蒸馏水、碱以及表面活性剂、还原剂和染料的混合物被混合在 25 毫升的溶液中。PG 电池通过实验成功展示了高效系统,这也是研究的预期目标,即利用可再生能源获得更好的电能。研究结果对于 BY+NaLS+AA,观察到的光电位、最大光电流和填充因子分别为 924.00 mV 和 630.00 µA, 0.3422。PG 电池的性能和转换效率分别为 140.00 分钟和 2.1562%。新颖性:正如所报告的结果(在 BY+NaLS+AA 系统中)所提到的,这项工作对现有文献具有新的价值。所获得的结果是对太阳能转换和储存的 PG 的更好的创新研究。关键词亮黄、NaLS、抗坏血酸、光电效应、光电流
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Innovative Study of the Photogalvanics for Solar Energy Conversion and Storage Through Brilliant Yellow + NaLS + Ascorbic Acid System
Objective: A thorough analysis of the electrical output of PG cells has not piqued the research community's curiosity. The current study reports better findings of PG cell in order to accomplish this objective of providing the globe with pollution-free nature for sustainable development. The purpose of the study is to improve the conversion of solar energy into electricity and its storage utilizing PG cells for higher electrical output. Methods: The PG cell set-up consists of two electrodes, a digital pH metre, a resistance key, a carbon pot, and a micro-ammeter. Investigations into the specifically designed H-shaped PG cell were done for better electrical outcomes. The various solar parameters in a PG cell with a Brilliant yellow (BY) + NaLS + Ascorbic acid (AA) system was examined. The main effects of solar energy were examined by adjusting the PG cell's various parameters. For the PG cell, distilled water, alkali, and a mixture of surfactant, reductant, and dye were combined in a 25 ml solution. The PG cell has successfully experimentally demonstrated the efficient system that was the research's desired aim in terms of better electrical outcomes from renewable energy. Findings: For the BY+NaLS+AA, the observed photopotential, maximum photocurrent and fill factor were 924.00 mV and 630.00 µA, 0.3422, respectively. The PG cell Performance and conversion efficacy were found to be 140.00 minutes and 2.1562%, respectively. Novelty: As reported results (in BY+NaLS+AA system) are mentioned that work has new value to the existing literature. The obtained results are better innovative study of the PG for solar energy conversion and storage. Keywords: Brilliant yellow, NaLS, Ascorbic acid, Photogalvanics, Photocurrent
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