Tanabe, K. A Review of Ultrahigh Efficiency III-V Semiconductor Compound Solar Cells: Multijunction Tandem, Lower Dimensional, Photonic Up/Down Conversion and Plasmonic Nanometallic Structures. Energies, 2009, 2, 504-530.

I have stated in my recent review article that no direct observation of multiple exciton generation (MEG) in the shape of photocurrent extracted from a semiconductor had been made yet. [...]

Bibliographic Details
Main Author: Katsuaki Tanabe
Format: Article
Language:English
Published: MDPI AG 2009-08-01
Series:Energies
Subjects:
Online Access:http://www.mdpi.com/1996-1073/2/3/695/
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author Katsuaki Tanabe
author_facet Katsuaki Tanabe
author_sort Katsuaki Tanabe
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description I have stated in my recent review article that no direct observation of multiple exciton generation (MEG) in the shape of photocurrent extracted from a semiconductor had been made yet. [...]
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spelling doaj.art-e2a49bbe0eea4282b179cfe0fc96eb4c2022-12-22T02:08:07ZengMDPI AGEnergies1996-10732009-08-012369569610.3390/en20300695Tanabe, K. A Review of Ultrahigh Efficiency III-V Semiconductor Compound Solar Cells: Multijunction Tandem, Lower Dimensional, Photonic Up/Down Conversion and Plasmonic Nanometallic Structures. Energies, 2009, 2, 504-530.Katsuaki TanabeI have stated in my recent review article that no direct observation of multiple exciton generation (MEG) in the shape of photocurrent extracted from a semiconductor had been made yet. [...]http://www.mdpi.com/1996-1073/2/3/695/solar energyrenewable energyclean energysolar cellsphotovoltaicssemiconductorsmultijunctionquantum wellsquantum dotssurface plasmons
spellingShingle Katsuaki Tanabe
Tanabe, K. A Review of Ultrahigh Efficiency III-V Semiconductor Compound Solar Cells: Multijunction Tandem, Lower Dimensional, Photonic Up/Down Conversion and Plasmonic Nanometallic Structures. Energies, 2009, 2, 504-530.
Energies
solar energy
renewable energy
clean energy
solar cells
photovoltaics
semiconductors
multijunction
quantum wells
quantum dots
surface plasmons
title Tanabe, K. A Review of Ultrahigh Efficiency III-V Semiconductor Compound Solar Cells: Multijunction Tandem, Lower Dimensional, Photonic Up/Down Conversion and Plasmonic Nanometallic Structures. Energies, 2009, 2, 504-530.
title_full Tanabe, K. A Review of Ultrahigh Efficiency III-V Semiconductor Compound Solar Cells: Multijunction Tandem, Lower Dimensional, Photonic Up/Down Conversion and Plasmonic Nanometallic Structures. Energies, 2009, 2, 504-530.
title_fullStr Tanabe, K. A Review of Ultrahigh Efficiency III-V Semiconductor Compound Solar Cells: Multijunction Tandem, Lower Dimensional, Photonic Up/Down Conversion and Plasmonic Nanometallic Structures. Energies, 2009, 2, 504-530.
title_full_unstemmed Tanabe, K. A Review of Ultrahigh Efficiency III-V Semiconductor Compound Solar Cells: Multijunction Tandem, Lower Dimensional, Photonic Up/Down Conversion and Plasmonic Nanometallic Structures. Energies, 2009, 2, 504-530.
title_short Tanabe, K. A Review of Ultrahigh Efficiency III-V Semiconductor Compound Solar Cells: Multijunction Tandem, Lower Dimensional, Photonic Up/Down Conversion and Plasmonic Nanometallic Structures. Energies, 2009, 2, 504-530.
title_sort tanabe k a review of ultrahigh efficiency iii v semiconductor compound solar cells multijunction tandem lower dimensional photonic up down conversion and plasmonic nanometallic structures energies 2009 2 504 530
topic solar energy
renewable energy
clean energy
solar cells
photovoltaics
semiconductors
multijunction
quantum wells
quantum dots
surface plasmons
url http://www.mdpi.com/1996-1073/2/3/695/
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