Crystal Growth for High-efficiency Silicon Solar Cells

Crystal Growth for High-efficiency Silicon Solar Cells
Title Crystal Growth for High-efficiency Silicon Solar Cells PDF eBook
Author Jet Propulsion Laboratory. Flat-Plate Solar Array Project
Publisher
Pages
Release
Genre
ISBN

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Crystal Growth for High-efficiency Silicon Solar Cells

Crystal Growth for High-efficiency Silicon Solar Cells
Title Crystal Growth for High-efficiency Silicon Solar Cells PDF eBook
Author K. Dumas
Publisher
Pages 294
Release 1985
Genre
ISBN

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Crystal Growth of Silicon for Solar Cells

Crystal Growth of Silicon for Solar Cells
Title Crystal Growth of Silicon for Solar Cells PDF eBook
Author Kazuo Nakajima
Publisher Springer Science & Business Media
Pages 259
Release 2010-03-12
Genre Technology & Engineering
ISBN 3642020445

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This book, a continuation of the series “Advances in Materials Research,” is intended to provide the general basis of the science and technology of crystal growth of silicon for solar cells. In the face of the destruction of the global environment,the degradationofworld-widenaturalresourcesandtheexha- tion of energy sources in the twenty-?rst century, we all have a sincere desire for a better/safer world in the future. In these days, we strongly believe that it is important for us to rapidly developanewenvironment-friendlycleanenergyconversionsystemusingsolar energyastheultimatenaturalenergysource. Forinstance,mostofournatural resources and energy sources will be exhausted within the next 100 years. Speci?cally, the consumption of oil, natural gas, and uranium is a serious problem. Solar energy is the only ultimate natural energy source. Although 30% of total solar energy is re?ected at the earth’s surface, 70% of total solar energy can be available for us to utilize. The available solar energy amounts to severalthousand times larger than the world’s energy consumption in 2000 of about 9,000 Mtoe (M ton oil equivalent). To manage 10% of the world’s energy consumption at 2050 by solar energy, we must manufacture 40 GW solar cells per year continuously for 40 years. The required silicon feedstock is about 400,000 ton per year. We believe that this is an attainable target, since it can be realized by increasing the world production of silicon feedstock by 12times asmuchasthe presentproductionat2005.

Handbook of Photovoltaic Silicon

Handbook of Photovoltaic Silicon
Title Handbook of Photovoltaic Silicon PDF eBook
Author Deren Yang
Publisher Springer
Pages 0
Release 2019-11-28
Genre Technology & Engineering
ISBN 9783662564714

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The utilization of sun light is one of the hottest topics in sustainable energy research. To efficiently convert sun power into a reliable energy – electricity – for consumption and storage, silicon and its derivatives have been widely studied and applied in solar cell systems. This handbook covers the photovoltaics of silicon materials and devices, providing a comprehensive summary of the state of the art of photovoltaic silicon sciences and technologies. This work is divided into various areas including but not limited to fundamental principles, design methodologies, wafering techniques/fabrications, characterizations, applications, current research trends and challenges. It offers the most updated and self-explanatory reference to all levels of students and acts as a quick reference to the experts from the fields of chemistry, material science, physics, chemical engineering, electrical engineering, solar energy, etc..

Crystal Growth of Si Ingots for Solar Cells Using Cast Furnaces

Crystal Growth of Si Ingots for Solar Cells Using Cast Furnaces
Title Crystal Growth of Si Ingots for Solar Cells Using Cast Furnaces PDF eBook
Author Kazuo Nakajima
Publisher Elsevier
Pages 392
Release 2019-10-07
Genre Technology & Engineering
ISBN 0128200707

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Crystal Growth of Si Ingots for Solar Cells Using Cast Furnaces is the first book written to both comprehensively describe these concepts and technologies and compare the strengths and weaknesses of various techniques. Readers will learn about the basic growth and characterization of Si crystals, including sections on the history of cast methods for Si ingots for solar cells. Methods discussed include the dendrite cast method, as well as other significant technologies, including the high-performance (HP) cast and mono-like cast methods. These concepts, growth mechanisms, growth technologies, and the problems that still need to be solved are all included in this comprehensive volume. - Covers the concept of crystal growth, providing an understanding of each growth method - Discusses the quality of Si ingot, mainly from the viewpoint of crystal defects and their control - Reviews fundamental characterization concepts to discern the quality of ingots and wafers - Discusses concepts and technologies to establish a low-temperature region in a Si melt using the NOC method in order to obtain a uniform and large Si single ingot with low stress

Proceedings of the Flat-plate Solar Array Project Workshop on Crystal Growth for High-efficiency Silicon Solar Cells

Proceedings of the Flat-plate Solar Array Project Workshop on Crystal Growth for High-efficiency Silicon Solar Cells
Title Proceedings of the Flat-plate Solar Array Project Workshop on Crystal Growth for High-efficiency Silicon Solar Cells PDF eBook
Author
Publisher
Pages
Release 1985
Genre
ISBN

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Crystal Growth of Silicon for Solar Cells

Crystal Growth of Silicon for Solar Cells
Title Crystal Growth of Silicon for Solar Cells PDF eBook
Author Kazuo Nakajima
Publisher Springer
Pages 255
Release 2012-03-14
Genre Technology & Engineering
ISBN 9783642260759

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This book, a continuation of the series “Advances in Materials Research,” is intended to provide the general basis of the science and technology of crystal growth of silicon for solar cells. In the face of the destruction of the global environment,the degradationofworld-widenaturalresourcesandtheexha- tion of energy sources in the twenty-?rst century, we all have a sincere desire for a better/safer world in the future. In these days, we strongly believe that it is important for us to rapidly developanewenvironment-friendlycleanenergyconversionsystemusingsolar energyastheultimatenaturalenergysource. Forinstance,mostofournatural resources and energy sources will be exhausted within the next 100 years. Speci?cally, the consumption of oil, natural gas, and uranium is a serious problem. Solar energy is the only ultimate natural energy source. Although 30% of total solar energy is re?ected at the earth’s surface, 70% of total solar energy can be available for us to utilize. The available solar energy amounts to severalthousand times larger than the world’s energy consumption in 2000 of about 9,000 Mtoe (M ton oil equivalent). To manage 10% of the world’s energy consumption at 2050 by solar energy, we must manufacture 40 GW solar cells per year continuously for 40 years. The required silicon feedstock is about 400,000 ton per year. We believe that this is an attainable target, since it can be realized by increasing the world production of silicon feedstock by 12times asmuchasthe presentproductionat2005.