光阳极薄膜厚度对染料敏化太阳能电池性能的影响

C. O. Sreekala, R. Pragash, K. Sreelatha, I. Jinchu
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引用次数: 1

摘要

太阳能是满足未来发电快速增长的能源需求的潜在候选能源。由于这种不断增长的需求,高效太阳能电池成为一个研究热点。染料敏化太阳能电池由于其固有的成本降低潜力、相对适中的生产技术和通用性,被认为是一种很有前途的未来技术,可以与硅基太阳能电池竞争。电池的效率参数是由染料分子的吸附决定的,这取决于半导体层的厚度。本文采用自旋镀膜和博士叶片技术,重点研究了DSSC的TiO2层厚度对其转化效率的影响。研究了光电参数,并用椭偏仪测量了器件的厚度。结果表明,采用单层自旋镀膜技术制备的器件具有较高的效率(约2.53%)。这项工作使我们了解了厚度在DSSC效率中的作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Influence of film thickness of photoanode on dye sensitized solar cell performance
Solar energy is a potential candidate to fulfill the rapidly increasing energy demands of future generation. Owing to this increasing demand, high efficiency solar cells stand an area of intense research. Dye Sensitized Solar Cells have attracted lot of recognition and is considered as a promising upcoming technology, which can compete with silicon based solar cells, owing to its intrinsic cost reduction potential, relatively modest production technology and its versatility. The efficiency parameter of a cell is governed by the adsorption of dye molecules, which depends on the thickness of the semiconducting layer. This paper emphasizes on the effect of thickness of the TiO2 layer of DSSC on its conversion efficiency by means of spin coating and Doctor blade techniques. The photo voltaic parameters were studied and compared with the thickness of the fabricated devices, measured using ellipsometry. It is found that the device fabricated using spin coating technique with single layer have relatively higher efficiency (about 2.53 %). This work enabled us to know the role of thickness in the efficiency of DSSC.
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