High conversion and quantum efficiency indium rich p InGaNp InGaNn InGaN solar cell (original) (raw)

Theoretical simulations of the effects of the indium content, thickness, and defect density of the i-layer on the performance of p-i-n InGaN single homojunction solar cells

Li-wei Tu

Journal of Applied Physics, 2010

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Optimization of InGaN Solar cell

habibullah manzoor

Sains Malaysiana, 2022

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Modeling of InGaN p-n junction solar cells

Li-wei Tu

Optical Materials Express, 2013

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Influence of Doping Concentration and Thickness of Regions on the Performance of InGaN Single Junction-Based Solar Cells: A Simulation Approach

Deependra Parajuli, Deb K U M A R Shah, PhD

Electrochem, 2022

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Improved Efficiency by Using Transparent Contact Layers in InGaN-Based p-i-n Solar Cells

Yonkil Jeong

IEEE Electron Device Letters , 2010

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Characterization and analysis of InGaN photovoltaic devices

Ian Ferguson

Conference Record of the Thirty-first IEEE Photovoltaic Specialists Conference, 2005., 2005

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Design and Realization of Wide-Band-Gap ($\sim$2.67 eV) InGaN p-n Junction Solar Cell

Muhammad Akbar Jamil

IEEE Electron Device Letters, 2010

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Numerical Study of a Solar Cell to Achieve the Highest InGaN Power Conversion Efficiency for the Whole In-Content Range

Madaín Pérez-Patricio

Micromachines

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IJERT-High Performance InGaN Solar Cell from Numerical Analysis

IJERT Journal

International Journal of Engineering Research and Technology (IJERT), 2013

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High Performance InGaN-Based Solar Cells

James Speck

2012

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Substantial photo-response of InGaN p–i–n homojunction solar cells

Cheng Chen

Semiconductor Science and Technology, 2009

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Photovoltaic effects in InGaN structures with p-n junctions

XINHUA WANG

physica status solidi (a), 2007

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Optimization of semibulk InGaN-based solar cell using realistic modeling

Walid EL-HUNI

Solar Energy, 2017

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High Efficiency InGaN Based Quantum Well & Quantum Dot Solar Cell

Julfikar Hossain

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Design and Simulation of a Highly Efficient InGaN/Si Double-Junction Solar Cell

Journal of Electrical and Computer Engineering Innovations

2017

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Enhancing the efficiency of the gallium indium nitride (InGaN) solar cell by optimizing the effective parameters

Abdelkader Djelloul

Chalcogenide Letters Vol. 19, No. 9, September 2022, p. 611 - 619, 2022

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InGaN-Based p–i–n Solar Cells with Graphene Electrodes

jaephil Shim

Applied Physics Express, 2011

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Simulation and optimization of a tandem solar cell based on InGaN

Zehor Allam

Mathematics and Computers in Simulation, 2018

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MOVPE growth of thick (∼1 µm) InGaN on AlN/Si substrates for InGaN/Si tandem solar cells

Tanvir Hasan

Japanese Journal of Applied Physics, 2015

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High quality thick InGaN nanostructures grown by nanoselective area growth for new generation photovoltaic devices

Jean Salvestrini

physica status solidi (a), 2015

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Efficiency improvement in InGaN-based solar cells by indium tin oxide nano dots covered with ITO films

jaephil Shim

Optics Express, 2012

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Study of simulations of double graded InGaN solar cell structures

Malak Refaee

2021

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The effect of indium composition on open-circuit voltage of InGaN thin-film solar cell: An analytical and computer simulation study

Chenna Dhanavantri

2012

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Pseudomorphic thick InGaN growth with a grading interlayer by metal organic chemical vapor deposition for InGaN/GaN p–i–n solar cells

Young-Dahl Jho

Journal of Crystal Growth, 2014

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Improving InGaN heterojunction solar cells efficiency using a semibulk absorber

Walid EL-HUNI

Solar Energy Materials and Solar Cells, 2017

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Multilayered InGaN/GaN structure vs. single InGaN layer for solar cell applications: A comparative study

El Youssef, Suresh Sundaram, T. Moudakir

Acta Materialia, 2013

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InGaN photocell significant efficiency enhancement on Sian influence of interlayer physical properties

Bablu Ghosh

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Indium‐rich InGaN/GaN solar cells with improved performance due to plasmonic and dielectric nanogratings

Uttam Kumawat

Energy Science & Engineering

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