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Next generation multilayer graded ba...
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Ojo, A. A.
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Next generation multilayer graded bandgap solar cells
Record Type:
Electronic resources : Monograph/item
Title/Author:
Next generation multilayer graded bandgap solar cells/ by A. A. Ojo, W. M. Cranton, I. M. Dharmadasa.
Author:
Ojo, A. A.
other author:
Cranton, W. M.
Published:
Cham :Springer International Publishing : : 2019.,
Description:
xiii, 254 p. :ill., digital ;24 cm.
[NT 15003449]:
Introduction to Solar Energy and Photovoltaics -- Photovoltaic solar cells - Materials, Concepts and Devices -- Techniques utilized in materials growth, materials and device characterization -- CdS deposition and characterization -- CdTe deposition and characterization -- Solar cell fabrication and characterization -- Thought on the present and future of photovoltaic and its applications.
Contained By:
Springer eBooks
Subject:
Photovoltaic power generation. -
Online resource:
http://dx.doi.org/10.1007/978-3-319-96667-0
ISBN:
9783319966670
Next generation multilayer graded bandgap solar cells
Ojo, A. A.
Next generation multilayer graded bandgap solar cells
[electronic resource] /by A. A. Ojo, W. M. Cranton, I. M. Dharmadasa. - Cham :Springer International Publishing :2019. - xiii, 254 p. :ill., digital ;24 cm.
Introduction to Solar Energy and Photovoltaics -- Photovoltaic solar cells - Materials, Concepts and Devices -- Techniques utilized in materials growth, materials and device characterization -- CdS deposition and characterization -- CdTe deposition and characterization -- Solar cell fabrication and characterization -- Thought on the present and future of photovoltaic and its applications.
This book will guide Photovoltaics researchers in a new way of thinking about harvesting light energy from all wavelengths of the solar spectrum. It closes the gap between general solar cells books and photovoltaics journal articles, by focusing on the latest developments in our understanding of solid-state device physics. The material presented is experimental and based on II-VI thin-film materials, mainly CdTe-based solar cells. The authors describe the use of new device design, based on multilayer graded bandgap configuration, using CdTe-based solar cells. The authors also explain how the photo-generated currents can be enhanced using multi-step charge carrier production. The possibility of fabricating these devices using low-cost and scalable electroplating is demonstrated. The value of electroplating for large area electronic devices such as PV solar panels, display devices and nano-technology devices are also demonstrated. By enabling new understanding of the engineering of electroplated semiconductor materials and providing an overview of the semiconductor physics and technology, this practical book is ideal to guide researchers, engineers, and manufacturers on future solar cell device designs and fabrications.
ISBN: 9783319966670
Standard No.: 10.1007/978-3-319-96667-0doiSubjects--Topical Terms:
675310
Photovoltaic power generation.
LC Class. No.: TK1087
Dewey Class. No.: 621.31244
Next generation multilayer graded bandgap solar cells
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Introduction to Solar Energy and Photovoltaics -- Photovoltaic solar cells - Materials, Concepts and Devices -- Techniques utilized in materials growth, materials and device characterization -- CdS deposition and characterization -- CdTe deposition and characterization -- Solar cell fabrication and characterization -- Thought on the present and future of photovoltaic and its applications.
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This book will guide Photovoltaics researchers in a new way of thinking about harvesting light energy from all wavelengths of the solar spectrum. It closes the gap between general solar cells books and photovoltaics journal articles, by focusing on the latest developments in our understanding of solid-state device physics. The material presented is experimental and based on II-VI thin-film materials, mainly CdTe-based solar cells. The authors describe the use of new device design, based on multilayer graded bandgap configuration, using CdTe-based solar cells. The authors also explain how the photo-generated currents can be enhanced using multi-step charge carrier production. The possibility of fabricating these devices using low-cost and scalable electroplating is demonstrated. The value of electroplating for large area electronic devices such as PV solar panels, display devices and nano-technology devices are also demonstrated. By enabling new understanding of the engineering of electroplated semiconductor materials and providing an overview of the semiconductor physics and technology, this practical book is ideal to guide researchers, engineers, and manufacturers on future solar cell device designs and fabrications.
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W9366732
電子資源
11.線上閱覽_V
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EB TK1087
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