高性能太阳能电池应用中基于 ZnSe 和 Perovskite/Graphene 薄膜材料的新方法和可扩展性预测综述

Thangavel Rajesh Kumar, S. Sudarsan, Ayyar Dinesh, Govindaraj Prabha, Manickam Chozhanathmisra, Subbarayan Sathiyamurthy, Y. Slimani, M. Almessiere, A. Baykal, S. Jaganathan, Munawar Iqbal, Manikandan Ayyar
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摘要

摘要 近年来,化石能源燃料的使用对自然、健康和环境的影响越来越大,因此,人们普遍要求改善和利用可再生能源和设备。随着人类生活的快速增长,能源变得更加重要。人口的爆炸性增长和能源消耗需求是当今世界独有的问题。为了满足能源需求,高效的能源转换和储存设备应运而生。随着能源需求的增加和环境污染的加剧,世界需要一些新型导电材料,包括与其他硅支持的光伏技术相比具有出色光电转换效率(PCE)的透辉石太阳能电池(PSCs),以及用于替代能源转换和制备高性能半导体器件的半导体材料。半导体薄膜在时尚科学和电子技术领域发挥着不可或缺的作用。其中,II-VI 族化合物半导体薄膜是一类重要的材料,它们一般都是综合性宽带隙材料。此外,未掺杂和稀土金属离子掺杂的硒化锌(ZnSe)薄膜是目前需求量最大、技术上最重要的材料,具有光电器件(太阳能电池、光电化学电池和发光二极管)的潜力,在整个可见光谱直至红外波段都很活跃。在这些物质上沉积薄涂层的各种技术得到了更广泛的应用。在这篇综述中,介绍了基于半导体材料的薄膜在各种能源生成领域(尤其是太阳能电池)应用的最新先进技术,重点回顾了用于太阳能电池应用的高性能半导体薄膜材料的各种类型 ZnSe 薄膜基材料的最新研发进展。最后,介绍了半导体薄膜在未来卫生能源设备工艺中的优势和材料挑战。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Review of novel approach and scalability forecast of ZnSe and Perovskite/Graphene based thin film materials for high performance solar cell applications
Abstract In the recent years, the using of fossil energy source-based fuels are delivering to the predetermined nature, health and environmental exposure, there is a universal necessitate prepared to well improvement and consumption of renewable energy source and apparatus. With the rapid growth of human life, energy is more essential. The explosive growth of population and energy consumption demands are the exclusive issue of the present world. In response to the energy demands, the growth of highly efficient energy conversion and storage devices. With increasing energy demands and environmental pollution, there is a requirement of the world to great some novel conducting materials consist of Perovskite solar cells (PSCs) which is delivered that excellent photoconversion efficiencies (PCE) compare with the other silicon supported photovoltaics, and also semiconducting materials for the conversion of substitute energy sources and preparation of high high-performance semiconductor devices. Semiconducting thin films play an indispensable role in fashionable science and electronic technology. Among them, the II–VI compound semiconductor thin films are an important class of materials, and they are generally comprehensive wide-band gap materials. In addition, the un-doped and rare-earth metal ions doped zinc selenide (ZnSe) thin films are currently the most demanding and technologically important materials, which have the potential for optoelectronic devices (solar cells, photoelectrochemical cell and light emitting diodes) and are active throughout the entire visible spectrum extending into the infrared wavelengths. Various techniques for depositing thin coatings on these substances are utilized to a greater extent. In this review, the most recent advanced techniques in the application of semiconducting materials-based thin films were produced in various energy-generated fields, particularly solar cells, with a major focus on a review of recent progress in the development of various types of ZnSe thin film-based material for high-performance semiconducting thin film material for solar cell application. Lastly, the advantages and material challenges of semiconductor-based thin films for future sanitary energy device process are described.
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