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Titlebook: Solar Cells and Modules; Arvind Shah Book 2020 Springer Nature Switzerland AG 2020 Amorphous and Microcrystalline Silicon Solar Cells.Cont

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发表于 2025-3-21 19:57:06 | 显示全部楼层 |阅读模式
书目名称Solar Cells and Modules
编辑Arvind Shah
视频video
概述Introduces the field in an intuitive and accessible manner.Provides an up-to-date survey of research and development of crystalline silicon wafer-based and thin-film solar cells.Presents important pro
丛书名称Springer Series in Materials Science
图书封面Titlebook: Solar Cells and Modules;  Arvind Shah Book 2020 Springer Nature Switzerland AG 2020 Amorphous and Microcrystalline Silicon Solar Cells.Cont
描述. .This book gives a comprehensive introduction to the field of photovoltaic (PV) solar cells and modules. In thirteen chapters, it addresses a wide range of topics including the spectrum of light received by PV devices, the basic functioning of a solar cell, and the physical factors limiting the efficiency of solar cells. It places particular emphasis on crystalline silicon solar cells and modules, which constitute today more than 90 % of all modules sold worldwide. Describing in great detail both the manufacturing process and resulting module performance, the book also touches on the newest developments in this sector, such as Tunnel Oxide Passivated Contact (TOPCON) and heterojunction modules, while dedicating a major chapter to general questions of module design and fabrication. Overall, it presents the essential theoretical and practical concepts of PV solar cells and modules in an easy-to-understand manner and discusses current challenges facing the global research and development community..
出版日期Book 2020
关键词Amorphous and Microcrystalline Silicon Solar Cells; Contact Layers; Life Cycle Analysis; Module Fabrica
版次1
doihttps://doi.org/10.1007/978-3-030-46487-5
isbn_ebook978-3-030-46487-5Series ISSN 0933-033X Series E-ISSN 2196-2812
issn_series 0933-033X
copyrightSpringer Nature Switzerland AG 2020
The information of publication is updating

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发表于 2025-3-21 23:17:55 | 显示全部楼层
Solar Cells: Optical and Recombination Losses,oduce the four main types of recombination processes (a) radiative recombination, (b) Shockley-Read-Hall (SRH) recombination, (c) Auger recombination and (d) surface recombination. In Chaps. . and . we will apply this basic information to design highly efficient solar cells.
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Module Deployment and Energy Rating,me scale of these failures, then investigating how and in which cases these failures are recoverable. Finally, the tools to accurately perform the energy yield measurement via monitoring of PV plants will be introduced, to assist the plant owner in understanding when a power plant is underperforming.
发表于 2025-3-22 12:39:55 | 显示全部楼层
Introduction,m pioneering work on the first 6% efficient silicon solar cell in 1954 to today’s mainstream modules with close to 20% efficiency, technology development and market have been intimately linked. Strong market growth has brought global PV installations to well over 600 Gigawatts (GW.) cumulative capac
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Solar Cells: Optical and Recombination Losses,ransition (direct bandgaps), like GaAs, CdTe etc. and semiconductors with indirect transitions (indirect bandgaps) like silicon. Thereafter we introduce various methods for achieving trapping of the light within the semiconductor, such as (a) the introduction of an ARC (antireflection coating layer)
发表于 2025-3-22 21:57:55 | 显示全部楼层
Crystalline Silicon Solar Cells: Homojunction Cells,ens if an electron absorbs energy from the light and detaches itself from its atom—it becomes thereby a free charge carrier, which contributes to power generation. This is called the “photovoltaic effect”. In the following, our aim will be to understand the use of the photovoltaic effect to a greate
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Crystalline Silicon Solar Cells: Heterojunction Cells, explains the functioning of such passivated contacts; it discusses the tunnel effect: an effect, which is important for these contacts. The role of the various layers within HJT cells is described. The advantages and disadvantages of the various cell architectures for HJT cells are explained. Since
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