Electrical characteristic of dye-sensitizers adsorbed to 10µm RA-TiO2 film at different light intensity

N. Gomesh, R. Santiagoo, Z. Daud, H. A. Tajarudin
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Abstract

Fossil fuel reserve throughout the world was projected to only last for 40 years for oil, 60 years for natural gas and 20 decades for coal. This projection has prompted alternative energy researchers to advance into renewable energy. Among most manufactured solar cells, The Dye sensitized solar cell is in the 3rd generation of the family. This paper presents the fabrication of Dye sensitized solar cell with dye from Keriang and Pucuk merah fruit. The TiO2 electrode with a thickness of 10 µm is used to immersed into the dye. The cell was tested under a solar simulator with standard test condition. The results show that the Keriang dye has the photo to electrical efficiency of 1.16 % while the Pucuk Merah dye shows 0.89%. The data shows that the bonding of anthocyanin pigment in particular the carboxyl and hydroxyl group to the TiO2 molecules were successful.
不同光强下10µm RA-TiO2薄膜上染料敏化剂的电特性
据预测,全球化石燃料储量仅为石油40年、天然气60年、煤炭20年。这一预测促使替代能源研究人员向可再生能源领域推进。在大多数制造的太阳能电池中,染料敏化太阳能电池是该家族的第三代。本文介绍了以科良果和槟榔果为原料制备染料敏化太阳能电池的方法。将厚度为10µm的TiO2电极浸入染料中。电池在太阳模拟器上进行了标准测试条件下的测试。结果表明,可良染料的光电效率为1.16%,而普克美拉染料的光电效率为0.89%。结果表明,花青素色素的羧基和羟基与TiO2分子的结合是成功的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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