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Photovoltaic Solar Energy
  • Language: en
  • Pages: 645

Photovoltaic Solar Energy

Photovoltaic Solar Energy Thoroughly updated overview of photovoltaic technology, from materials to modules and systems Volume 2 of Photovoltaic Solar Energy provides fundamental and contemporary knowledge about various photovoltaic technologies in the framework of material science, device physics of solar cells, chemistry for manufacturing, engineering of PV modules, and the design aspects of photovoltaic applications, with the aim of informing the reader about the basic knowledge of each aspect of photovoltaic technologies and applications in the context of the most recent advances in science and engineering. The text is written by leading specialists for each topic in a concise manner and...

Nanostructures in Photovoltaics
  • Language: en
  • Pages: 400

Nanostructures in Photovoltaics

Providing the fundamental framework upon which new scientific developments are based—regarding photovoltaics solar cells and the use of new nanomaterials and nanostructured devices—this study begins with a general introduction to photovoltaics. Unlike other solar cell books, however, this is done with a focus on the fundamental physical limits and practicality of assumptions that form the basis for the ensuing discussion of nanostructured approaches to photovoltaics conversion. The discussion of the approaches is presented based upon basic quantum mechanics to provide a framework that is not merely a topical treatment of recent results but also a reference which should prove useful for future developments.

Solar Cells
  • Language: en
  • Pages: 400

Solar Cells

This book contains chapters in which the problems of modern photovoltaics are considered. The majority of the chapters provide an overview of the results of research and development of different types of solar cells. Such chapters are completed by a justification for a new solar cell structure and technology. Of course, highly effective solar energy conversion is impossible without an in-depth examination of the solar cell components as physical materials. The relations between structural, thermodynamic, and optical properties of the physical material without addressing the band theory of solids are of both theoretical and practical interest. Requirements formulated for the material are also to be used for maximally efficient conversion of solar radiation into useful work.

Solar Cell Materials
  • Language: en
  • Pages: 342

Solar Cell Materials

This book presents a comparison of solar cell materials, including both new materials based on organics, nanostructures and novel inorganics and developments in more traditional photovoltaic materials. It surveys the materials and materials trends in the field including third generation solar cells (multiple energy level cells, thermal approaches and the modification of the solar spectrum) with an eye firmly on low costs, energy efficiency and the use of abundant non-toxic materials.

Principles Of Solar Cells: Connecting Perspectives On Device, System, Reliability, And Data Science
  • Language: en
  • Pages: 541

Principles Of Solar Cells: Connecting Perspectives On Device, System, Reliability, And Data Science

How does a solar cell work? How efficient can it be? Why do intricate patterns of metal lines decorate the surface of a solar module? How are the modules arranged in a solar farm? How can sunlight be stored during the day so that it can be used at night? And, how can a lifetime of more than 25 years be ensured in solar modules, despite the exposure to extreme patterns of weather? How do emerging machine-learning techniques assess the health of a solar farm? This practical book will answer all these questions and much more.Written in a conversational style and with over one-hundred homework problems, this book offers an end-to-end perspective, connecting the multi-disciplinary and multi-scale...

Energy Conversion Efficiency of Solar Cells
  • Language: en
  • Pages: 202

Energy Conversion Efficiency of Solar Cells

  • Type: Book
  • -
  • Published: 2019-07-06
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  • Publisher: Springer

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 radi...

JJAP Letters
  • Language: en
  • Pages: 744

JJAP Letters

  • Type: Book
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  • Published: 2007
  • -
  • Publisher: Unknown

None

JJAP
  • Language: en
  • Pages: 390

JJAP

  • Type: Book
  • -
  • Published: 2004
  • -
  • Publisher: Unknown

None

Journal of the Physical Society of Japan
  • Language: en
  • Pages: 832

Journal of the Physical Society of Japan

  • Type: Book
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  • Published: 2004
  • -
  • Publisher: Unknown

None

Solar Energy
  • Language: en
  • Pages: 480

Solar Energy

Solar Energy is an authoritative reference on the design of solar energy systems in building projects, with applications, operating principles, and simple tools for the construction, engineering, and design professional. The book simplifies the solar design and engineering process, providing sample documentation and special tools that provide all the information needed for the complete design of a solar energy system for buildings to enable mainstream MEP and design firms, and not just solar energy specialists, to meet the growing demand for solar energy systems in building projects.