Wide Band Gap Semiconductor Nanostructures for Optoelectronic Applications

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Release : 2009
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Book Rating : /5 ( reviews)

Wide Band Gap Semiconductor Nanostructures for Optoelectronic Applications - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Wide Band Gap Semiconductor Nanostructures for Optoelectronic Applications write by K. Lischka. This book was released on 2009. Wide Band Gap Semiconductor Nanostructures for Optoelectronic Applications available in PDF, EPUB and Kindle.

Special Issue Wide Band Gap Semiconductor Nanostructures for Optoelectronic Applications

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Release : 2009
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Book Rating : /5 ( reviews)

Special Issue Wide Band Gap Semiconductor Nanostructures for Optoelectronic Applications - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Special Issue Wide Band Gap Semiconductor Nanostructures for Optoelectronic Applications write by Klaus Lischka. This book was released on 2009. Special Issue Wide Band Gap Semiconductor Nanostructures for Optoelectronic Applications available in PDF, EPUB and Kindle.

Semiconductor Nanostructures for Optoelectronic Devices

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Release : 2012-01-13
Genre : Technology & Engineering
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Book Rating : 806/5 ( reviews)

Semiconductor Nanostructures for Optoelectronic Devices - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Semiconductor Nanostructures for Optoelectronic Devices write by Gyu-Chul Yi. This book was released on 2012-01-13. Semiconductor Nanostructures for Optoelectronic Devices available in PDF, EPUB and Kindle. This book presents the fabrication of optoelectronic nanodevices. The structures considered are nanowires, nanorods, hybrid semiconductor nanostructures, wide bandgap nanostructures for visible light emitters and graphene. The device applications of these structures are broadly explained. The book deals also with the characterization of semiconductor nanostructures. It appeals to researchers and graduate students.

Wide Band Gap Semiconductor Nanowires 1

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Release : 2014-08-08
Genre : Science
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Book Rating : 307/5 ( reviews)

Wide Band Gap Semiconductor Nanowires 1 - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Wide Band Gap Semiconductor Nanowires 1 write by Vincent Consonni. This book was released on 2014-08-08. Wide Band Gap Semiconductor Nanowires 1 available in PDF, EPUB and Kindle. GaN and ZnO nanowires can by grown using a wide variety of methods from physical vapor deposition to wet chemistry for optical devices. This book starts by presenting the similarities and differences between GaN and ZnO materials, as well as the assets and current limitations of nanowires for their use in optical devices, including feasibility and perspectives. It then focuses on the nucleation and growth mechanisms of ZnO and GaN nanowires, grown by various chemical and physical methods. Finally, it describes the formation of nanowire heterostructures applied to optical devices.

Wide Band Gap Semiconductor Nanowires 2

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Release : 2014-09-15
Genre : Technology & Engineering
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Book Rating : 877/5 ( reviews)

Wide Band Gap Semiconductor Nanowires 2 - read free eBook in online reader or directly download on the web page. Select files or add your book in reader. Download and read online ebook Wide Band Gap Semiconductor Nanowires 2 write by Vincent Consonni. This book was released on 2014-09-15. Wide Band Gap Semiconductor Nanowires 2 available in PDF, EPUB and Kindle. This book, the second of two volumes, describes heterostructures and optoelectronic devices made from GaN and ZnO nanowires. Over the last decade, the number of publications on GaN and ZnO nanowires has grown exponentially, in particular for their potential optical applications in LEDs, lasers, UV detectors or solar cells. So far, such applications are still in their infancy, which we analyze as being mostly due to a lack of understanding and control of the growth of nanowires and related heterostructures. Furthermore, dealing with two different but related semiconductors such as ZnO and GaN, but also with different chemical and physical synthesis methods, will bring valuable comparisons in order to gain a general approach for the growth of wide band gap nanowires applied to optical devices.