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Interdigitated back‐contacted structure: A different approach towards  high‐efficiency ultrathin copper indium gallium (di)selenide solar cells -  Rezaei - 2020 - Progress in Photovoltaics: Research and Applications -  Wiley Online Library
Interdigitated back‐contacted structure: A different approach towards high‐efficiency ultrathin copper indium gallium (di)selenide solar cells - Rezaei - 2020 - Progress in Photovoltaics: Research and Applications - Wiley Online Library

Optimization of Copper Indium Gallium Di-Selenide (CIGS) based solar cells  by back grading | Semantic Scholar
Optimization of Copper Indium Gallium Di-Selenide (CIGS) based solar cells by back grading | Semantic Scholar

CIGS absorber layer with double grading Ga profile for highly efficient  solar cells - ScienceDirect
CIGS absorber layer with double grading Ga profile for highly efficient solar cells - ScienceDirect

LayTec - PearL
LayTec - PearL

Record 1.0 V open‐circuit voltage in wide band gap chalcopyrite solar cells  - Larsson - 2017 - Progress in Photovoltaics: Research and Applications -  Wiley Online Library
Record 1.0 V open‐circuit voltage in wide band gap chalcopyrite solar cells - Larsson - 2017 - Progress in Photovoltaics: Research and Applications - Wiley Online Library

Top: Energy band diagram of a CIGS solar cell similar to the one... |  Download Scientific Diagram
Top: Energy band diagram of a CIGS solar cell similar to the one... | Download Scientific Diagram

Copper-Indium-Gallium-diSelenide (CIGS) Nanocrystalline Bulk Semiconductor  as the Absorber Layer and Its Current Technological Trend and Optimization  | IntechOpen
Copper-Indium-Gallium-diSelenide (CIGS) Nanocrystalline Bulk Semiconductor as the Absorber Layer and Its Current Technological Trend and Optimization | IntechOpen

Hybrid density functional theory study of Cu(In1−xGax)Se2 band structure  for solar cell application: AIP Advances: Vol 4, No 8
Hybrid density functional theory study of Cu(In1−xGax)Se2 band structure for solar cell application: AIP Advances: Vol 4, No 8

Narrow band-edge photoluminescence from AgInS2 semiconductor nanoparticles  by the formation of amorphous III–VI semiconductor shells | NPG Asia  Materials
Narrow band-edge photoluminescence from AgInS2 semiconductor nanoparticles by the formation of amorphous III–VI semiconductor shells | NPG Asia Materials

Frontiers | Wide-Bandgap Halide Perovskites for Indoor Photovoltaics |  Chemistry
Frontiers | Wide-Bandgap Halide Perovskites for Indoor Photovoltaics | Chemistry

Effect of the absorber layer band-gap on CIGS solar cell - ScienceDirect
Effect of the absorber layer band-gap on CIGS solar cell - ScienceDirect

An investigation into the effects of band gap and doping concentration on  Cu(In,Ga)Se2 solar cell efficiency | SpringerPlus | Full Text
An investigation into the effects of band gap and doping concentration on Cu(In,Ga)Se2 solar cell efficiency | SpringerPlus | Full Text

a) CIGS solar cell structure and (b) CIGS band-gap diagram [2]. | Download  Scientific Diagram
a) CIGS solar cell structure and (b) CIGS band-gap diagram [2]. | Download Scientific Diagram

High‐performance low bandgap thin film solar cells for tandem applications  - Elanzeery - 2018 - Progress in Photovoltaics: Research and Applications -  Wiley Online Library
High‐performance low bandgap thin film solar cells for tandem applications - Elanzeery - 2018 - Progress in Photovoltaics: Research and Applications - Wiley Online Library

Copper indium gallium selenide based solar cells – a review - Energy &  Environmental Science (RSC Publishing) DOI:10.1039/C7EE00826K
Copper indium gallium selenide based solar cells – a review - Energy & Environmental Science (RSC Publishing) DOI:10.1039/C7EE00826K

All solution processable graded CIGS solar cells fabricated using  electrophoretic deposition - RSC Advances (RSC Publishing)  DOI:10.1039/C5RA26315H
All solution processable graded CIGS solar cells fabricated using electrophoretic deposition - RSC Advances (RSC Publishing) DOI:10.1039/C5RA26315H

Energies | Free Full-Text | Numerical Optimization of Gradient Bandgap  Structure for CIGS Solar Cell with ZnS Buffer Layer Using Technology  Computer-Aided Design Simulation | HTML
Energies | Free Full-Text | Numerical Optimization of Gradient Bandgap Structure for CIGS Solar Cell with ZnS Buffer Layer Using Technology Computer-Aided Design Simulation | HTML

Schematic of (a) typical structure and (b) energy band diagram of CIGS... |  Download Scientific Diagram
Schematic of (a) typical structure and (b) energy band diagram of CIGS... | Download Scientific Diagram

Studies on the graded band-gap copper indium di-selenide thin film solar  cells prepared by electrochemical route - ScienceDirect
Studies on the graded band-gap copper indium di-selenide thin film solar cells prepared by electrochemical route - ScienceDirect

The energy band diagram of the proposed CIGS solar cell with a BaSi2... |  Download Scientific Diagram
The energy band diagram of the proposed CIGS solar cell with a BaSi2... | Download Scientific Diagram

Energies | Free Full-Text | Numerical Optimization of Gradient Bandgap  Structure for CIGS Solar Cell with ZnS Buffer Layer Using Technology  Computer-Aided Design Simulation | HTML
Energies | Free Full-Text | Numerical Optimization of Gradient Bandgap Structure for CIGS Solar Cell with ZnS Buffer Layer Using Technology Computer-Aided Design Simulation | HTML

Effect of the absorber layer band-gap on CIGS solar cell - ScienceDirect
Effect of the absorber layer band-gap on CIGS solar cell - ScienceDirect

Introduction to Thin Film CIGS Solar Cells - ppt video online download
Introduction to Thin Film CIGS Solar Cells - ppt video online download

Optical study of back-contacted CIGS solar cells
Optical study of back-contacted CIGS solar cells