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Titlebook: Energy Conversion Efficiency of Solar Cells; Takashi Kita,Yukihiro‘Harada,Shigeo Asahi Book 2019 Springer Nature Singapore Pte Ltd. 2019 P

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书目名称Energy Conversion Efficiency of Solar Cells
编辑Takashi Kita,Yukihiro‘Harada,Shigeo Asahi
视频video
概述Offers a unique photovoltaics primer highlighting the Shockley-Queisser limit.Provides deep insights into the energy conversion efficiency of solar cells.Written to be readily accessible for undergrad
丛书名称Green Energy and Technology
图书封面Titlebook: Energy Conversion Efficiency of Solar Cells;  Takashi Kita,Yukihiro‘Harada,Shigeo Asahi Book 2019 Springer Nature Singapore Pte Ltd. 2019 P
描述.This book offers a concise primer on energy conversion efficiency and the Shockley-Queisser limit in single p-n junction solar cells. It covers all the important fundamental physics necessary to understand the conversion efficiency, which is indispensable in studying, investigating, analyzing, and designing solar cells in practice. As such it is valuable as a supplementary text for courses on photovoltaics, and bridges the gap between advanced topics in solar cell device engineering and the fundamental physics covered in undergraduate courses...The book first introduces the principles and features of solar cells compared to those of chemical batteries, and reviews photons, statistics and radiation as the physics of the source energy. Based on these foundations, it clarifies the conversion efficiency of a single p-n junction solar cell and discusses the Shockley-Queisser limit. Furthermore, it looks into various concepts of solar cells for breaking through the efficiency limitgiven in the single junction solar cell and presents feasible theoretical predictions. To round out readers’ knowledge of p-n junctions, the final chapter also reviews the essential semiconductor physics...The
出版日期Book 2019
关键词Primer on Solar Cells; Shockley-Queisser Limit; Primer on Photovoltaics; Solar Cell Efficiency; Detailed
版次1
doihttps://doi.org/10.1007/978-981-13-9089-0
isbn_softcover978-981-13-9091-3
isbn_ebook978-981-13-9089-0Series ISSN 1865-3529 Series E-ISSN 1865-3537
issn_series 1865-3529
copyrightSpringer Nature Singapore Pte Ltd. 2019
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发表于 2025-3-21 22:42:25 | 显示全部楼层
Photons from the Sun, efficiency of a solar cell is to understand the nature of light energy. In the present chapter, we clarify what energy is contained in light and explain the characteristics of the light that is emitted from the sun.
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Influences of Carrier Generation and Recombination on the Solar Cell Conversion Efficiency,e most ideal case, we neglected effects like internal generation of radiation and luminescence. However, the relation between the voltage and the current in an actual solar cell that employs a semiconductor diode (i.e., a p–n junction) is incompatible with the assumptions in Sect. 3.4 (these assumpt
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The Conversion Efficiency of a Solar Cell as Determined by the Detailed Balance Model, derive the maximum output power of the actual solar cell, we have to discuss the balance between absorption (resulting in electrical current) and emission (due to the established voltage). Therefore, the present chapter discusses the balanced condition of voltage and current by employing the curren
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Actual Calculation of Solar Cell Efficiencies, spectrum by employing Planck’s law for black-body radiation. As explained in Sect. ., the solar spectrum that passes the atmosphere differs according to the amount of air passed. This amount can be expressed as air mass (AM). In this chapter, we do not rely on the black-body radiation for the solar
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The Solar Cell and the Electrochemical Cell, to be skipped and summarized as “knowledge belonging to the category of semiconductor engineering.” On hearing the rather famous word ., one may think of realms of science completely different from the electrochemical cell. Since there are too many things that have to be learned regarding semicondu
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