Component Integration Effects in 4-Junction Solar Cells with Dilute Nitride 1eV Subcell (original) (raw)

Degradation of subcells and tunnel junctions during growth of GaInP/Ga(In)As/GaNAsSb/Ge 4-junction solar cells

Satrio Wicaksono

Progress in Photovoltaics: Research and Applications

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MOVPE Growth of In x Ga 1Lx N (x w 0.4) and Fabrication of Homo-junction Solar Cells

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Degradation of Ge subcells by thermal load during the growth of multijunction solar cells

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Modelling of lattice matched dilute nitride 4-junction concentrator solar cells on Ge substrates

Mario Ochoa

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Dilute Nitride GaInNAs and GaInNAsSb Solar Cells by Molecular Beam Epitaxy

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Comparison of MOVPE grown GaAs solar cells using different substrates and group-V precursors

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Germanium subcells for multijunction GaInP/GaInAs/Ge solar cells

A. Gudovskikh

Semiconductors, 2010

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InGaN/GaN multiple-quantum well heterostructures for solar cells grown by MOVPE: case studies

Christophe Durand

physica status solidi (c), 2012

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MOVPE Growth of InxGa1−xN (x ∼ 0.4) and Fabrication of Homo-junction Solar Cells

Jahirul Islam

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0.7-eV GaInAs Junction for a GaInP/GaAs/GaInAs(1eV)/GaInAs(0.7eV) Four-Junction Solar Cell

Andrew G Norman

2006 IEEE 4th World Conference on Photovoltaic Energy Conference, 2006

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p-GaN/i-In _\mathrm{x }xGa1x Ga1xGa1_\mathrm{x }$$ x N/n-GaN solar cell with indium compositional grading

Chenna Dhanavantri

Optical and Quantum Electronics, 2014

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An Examination of the GaInP/GaInAs/Ge Triple Junction Solar Cell with the Analytical Solar Cell Model

suleyman ozcelik

Acta Physica Polonica A, 2019

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Analytical modelling, simulation and comparative study of multi-junction (GaInP2/InGaAs/Ge) solar cell efficiency

Athil Ibrahim, Afeefah Nordin

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Dilute nitride GaInNAs and GaInNAsSb for solar cell applications

SL Tan

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Thinned GaInP/GaInAs/Ge solar cells grown with reduced cracking on Ge|Si virtual substrates

Manuel Hinojosa

Solar Energy Materials and Solar Cells, 2021

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Analysis of perimeter recombination in the subcells of GaInP/GaAs/Ge triple-junction solar cells

Iván Sánchez García

Progress in Photovoltaics: Research and Applications, 2014

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1EV GANxAS1-x-ySBy material for lattice-matched III–V solar cell implementation on GaAs and Ge

Eugene Fitzgerald

2009 34th IEEE Photovoltaic Specialists Conference (PVSC), 2009

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Development and characterization of high-efficiency Ga/sub 0.5/In/sub 0.5/P/GaAs/Ge dual- and triple-junction solar cells

Dimitri Krut

IEEE Transactions on Electron Devices, 1999

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High-efficiency metamorphic GaInP/GaInAs/Ge solar cells grown by MOVPE

Peter Colter

Journal of Crystal Growth, 2004

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Theoretical optimization of GaInP/GaAs dual-junction solar cell: Toward a 36% efficiency at 1000 suns

Mathieu Baudrit

physica status solidi (a), 2010

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Performance of 1 eV GaNAsSb-based photovoltaic cell on Si substrate at different growth temperatures

Prithu Sharma

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Implications of Redesigned, High-Radiative-Efficiency GaInP Junctions on III-V Multijunction Concentrator Solar Cells

Iván Sánchez García

IEEE Journal of Photovoltaics, 2015

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Monolithic Integration of Diluted-Nitride III–V-N Compounds on Silicon Substrates: Toward the III–V/Si Concentrated Photovoltaics

jacky even

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Performance evaluation of a GaInP GaAs solar cell structure with the integration of AlGaAs tunnel junction

Nihan AKIN SÖNMEZ, Suleyman Ozcelik

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Indium (In) Effects to The Efficiency Performance of Ga1-XInxP/GaAs Based Solar Cell Using Silvaco Software Modelling & Simulation

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Characterization of GaInP/Ge heterostructure solar cells by capacitance measurements at forward bias under illumination

N. Kalyuzhnyy, A. Gudovskikh

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Performance assessment of multijunction solar cells incorporating GaInNAsSb

Ville Polojärvi

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