光伏电池的产生及其性能影响因素的综合研究综述

IF 3.6 Q2 MATERIALS SCIENCE, MULTIDISCIPLINARY
Prabhakar Sharma, Ritesh Kumar Mishra
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引用次数: 0

摘要

利用化石燃料发电会产生更多的污染物和温室气体,对生态系统产生不利影响。一系列太阳能技术可用于解决即将到来的能源需求,同时减轻污染并保护世界免受全球威胁。本研究回顾了四代光伏(PV)太阳能电池的基本概念、使用的材料、性能、工作原理和冷却系统,以及它们各自的优缺点。该手稿分析了各种材料,包括它们的性能、物理性质(电子和光学)、可生物降解性、可用性、成本、温度稳定性、降解率和其他参数。本文还简要讨论了由纳米结构三元金属硫化物和三维石墨烯等尖端材料制成的高效太阳能器件的合理工程设计,与第三代太阳能电池相比,它们具有更多功能、更稳定、更薄、更轻、更高性能的特点。材料变化的影响在PV中被描述,其中太阳能电池技术的效率从4%提高到47.1%。进一步研究了影响太阳能光伏组件性能的不同内外部应力因素。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Comprehensive study on photovoltaic cell's generation and factors affecting its performance: A Review

The utilization of fossil fuels for power generation results in the production of a greater quantity of pollutants and greenhouse gases, which exerts detrimental impacts on the ecosystem. A range of solar energy technologies can be employed to address forthcoming energy demands, concurrently mitigating pollution and protecting the world from global threats. This study critically reviewed all four generations of photovoltaic (PV) solar cells, focusing on fundamental concepts, material used, performance, operational principles, and cooling systems, along with their respective advantages and disadvantages. The manuscript analyzes various materials, including their performance, physical properties (electronic and optical), biodegradability, availability, cost, temperature stability, degradation rate, and other parameters. The sensible engineering of effective solar devices made of cutting -edge materials along with nanostructured ternary metal sulphides, and three-dimensional graphene are also briefly discussed which are more versatile, stable, thin and light weight with high performance as compare to third generation solar cells. The impact of material alterations is delineated in PV, where the efficiency of solar cell technology has improved from 4% to 47.1%. Further the research article deals with different internal and external stress factors affecting the solar PV module performance.

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来源期刊
Materials for Renewable and Sustainable Energy
Materials for Renewable and Sustainable Energy MATERIALS SCIENCE, MULTIDISCIPLINARY-
CiteScore
7.90
自引率
2.20%
发文量
8
审稿时长
13 weeks
期刊介绍: Energy is the single most valuable resource for human activity and the basis for all human progress. Materials play a key role in enabling technologies that can offer promising solutions to achieve renewable and sustainable energy pathways for the future. Materials for Renewable and Sustainable Energy has been established to be the world''s foremost interdisciplinary forum for publication of research on all aspects of the study of materials for the deployment of renewable and sustainable energy technologies. The journal covers experimental and theoretical aspects of materials and prototype devices for sustainable energy conversion, storage, and saving, together with materials needed for renewable fuel production. It publishes reviews, original research articles, rapid communications, and perspectives. All manuscripts are peer-reviewed for scientific quality. Topics include: 1. MATERIALS for renewable energy storage and conversion: Batteries, Supercapacitors, Fuel cells, Hydrogen storage, and Photovoltaics and solar cells. 2. MATERIALS for renewable and sustainable fuel production: Hydrogen production and fuel generation from renewables (catalysis), Solar-driven reactions to hydrogen and fuels from renewables (photocatalysis), Biofuels, and Carbon dioxide sequestration and conversion. 3. MATERIALS for energy saving: Thermoelectrics, Novel illumination sources for efficient lighting, and Energy saving in buildings. 4. MATERIALS modeling and theoretical aspects. 5. Advanced characterization techniques of MATERIALS Materials for Renewable and Sustainable Energy is committed to upholding the integrity of the scientific record. As a member of the Committee on Publication Ethics (COPE) the journal will follow the COPE guidelines on how to deal with potential acts of misconduct. Authors should refrain from misrepresenting research results which could damage the trust in the journal and ultimately the entire scientific endeavor. Maintaining integrity of the research and its presentation can be achieved by following the rules of good scientific practice as detailed here: https://www.springer.com/us/editorial-policies
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