Broadband InGaAs quantum dot-in-a-well solar cells of p-type wells
Author:
Publisher
Elsevier BV
Subject
Materials Chemistry,Inorganic Chemistry,Condensed Matter Physics
Reference12 articles.
1. A Review of Ultrahigh Efficiency III-V Semiconductor Compound Solar Cells: Multijunction Tandem, Lower Dimensional, Photonic Up/Down Conversion and Plasmonic Nanometallic Structures
2. Increasing the Efficiency of Ideal Solar Cells by Photon Induced Transitions at Intermediate Levels
3. The Intermediate Band Solar Cell: Progress Toward the Realization of an Attractive Concept
4. Quantum dot solar cells
5. Improved device performance of InAs∕GaAs quantum dot solar cells with GaP strain compensation layers
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1. Emission wavelength selection for InGaAs quantum dots by anodic-aluminum-oxide membrane;Journal of Luminescence;2017-10
2. Effects of In0.82Ga0.18As/InP Double Buffers Design on the Microstructure of the In0.82G0.18As/InP Heterostructure;Crystals;2017-05-25
3. Structural and electrical characterizations of InxGa1-xAs/InP structures for infrared photodetector applications;Journal of Applied Physics;2014-03-14
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