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  4. Illumination-Dependent Requirements for Heterojunctions and Carrier-Selective Contacts on Silicon
 
research article

Illumination-Dependent Requirements for Heterojunctions and Carrier-Selective Contacts on Silicon

Conrad, Brianna
•
Antognini, Luca  
•
Amalathas, Amalraj Peter
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September 1, 2020
Ieee Journal Of Photovoltaics

High efficiency silicon solar cells generally feature heterojunction or carrier-selective contact architectures, for which there is current interest in developing structures using a wide range of materials. The electrical and optical requirements that these layers must fulfill have been investigated previously for standard test conditions. Here, we investigate how the required work functions and layer thickness differ under other illumination conditions. The differences will be important for the optimization of tandem device subcells, and for devices which are intended for use in low-light conditions or under low-level concentration. Heterojunction cells are fabricated and the effect of reduced contact thickness and doping at different illumination levels is experimentally demonstrated. Simulations of a-Si/c-Si heterojunctions and ideal metal-semiconductor junctions reveal a logarithmic variation with illumination level of 0.1-10 suns in the electrode work function, and the heterojunction contact layer work function and thickness required to minimize efficiency losses.

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Type
research article
DOI
10.1109/JPHOTOV.2020.2998900
Web of Science ID

WOS:000562057700002

Author(s)
Conrad, Brianna
Antognini, Luca  
Amalathas, Amalraj Peter
Boccard, Mathieu  
Holovsky, Jakub
Date Issued

2020-09-01

Published in
Ieee Journal Of Photovoltaics
Volume

10

Issue

5

Start page

1214

End page

1225

Subjects

Energy & Fuels

•

Materials Science, Multidisciplinary

•

Physics, Applied

•

Materials Science

•

Physics

•

lighting

•

photovoltaic cells

•

silicon

•

doping

•

sun

•

heterojunctions

•

photovoltaic systems

•

carrier selective contacts

•

silicon devices

•

simulation

•

solar-cells

•

metal-oxides

•

transparent electrodes

•

v characteristics

•

molybdenum oxide

•

optimization

•

moox

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

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PV-LAB  
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September 9, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/171502
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