Comparative Study of Nanomaterials in the Conditions of their Operation as Part of Color-Sensitized and Perovskite Solar Cells

E. A. Nizhnikovskiy
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Abstract

The prospects for creating the photoelectrochemical solar energy converters or solar cells based on the color-sensitized wide-gap semiconductors and perovskites were studied. Possible design, materials and technologies required in creation of such converters were considered. Based on the study of numerous literature data, it was demonstrated that the use of sensitized mesoporous titanium dioxide as a photoanode was quite expedient. The mesoporous titanium oxide film has a developed surface and, accordingly, a large area for the sensitizer adsorption. Mediator systems were studied, which were one of the key components of a photoelectrochemical cell; their characteristics significantly affect efficiency and stability of devices in general, as well as the electrocatalysts required in regeneration of the oxidized mediator component. Color-sensitized solar cells based on the mesoporous semiconductors are of the increasing interest because of their relatively low cost, simple manufacturing technology and high solar light conversion efficiency. Perovskites were studied; they include a group of materials with similar crystal structure able to compete with traditional silicon solar cells due to their flexibility, low cost of films and relative simplicity in the manufacturing process. Photoelectrochemical converters based on color-sensitized wide-gap semiconductors and perovskites are interesting from a practical point of view as an alternative to the traditional silicon technology
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纳米材料在色敏和钙钛矿太阳能电池中工作条件的比较研究
研究了基于色敏宽间隙半导体和钙钛矿的光电化学太阳能转换器或太阳能电池的发展前景。审议了制造这种转换器所需的可能的设计、材料和技术。通过对大量文献资料的研究,证明了敏化介孔二氧化钛作为光阳极是非常有利的。介孔氧化钛膜具有发达的表面,因此具有较大的敏化剂吸附面积。研究了作为光电化学电池关键组成部分之一的介体体系;它们的特性显著影响设备的效率和稳定性,以及氧化介质组分再生所需的电催化剂。基于介孔半导体的色敏太阳能电池因其成本较低、制造工艺简单、光能转换效率高而受到越来越多的关注。研究了钙钛矿;它们包括一组具有相似晶体结构的材料,由于其灵活性、薄膜成本低以及制造过程相对简单,这些材料能够与传统的硅太阳能电池竞争。从实用的角度来看,基于色敏宽间隙半导体和钙钛矿的光电化学转换器作为传统硅技术的替代品是很有趣的
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来源期刊
CiteScore
1.10
自引率
0.00%
发文量
40
期刊介绍: The journal is aimed at publishing most significant results of fundamental and applied studies and developments performed at research and industrial institutions in the following trends (ASJC code): 2600 Mathematics 2200 Engineering 3100 Physics and Astronomy 1600 Chemistry 1700 Computer Science.
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