Multi-Terminal GaInP/GaInAs/Ge Solar Cells for Subcells Characterization

Author:

Bidaud Thomas12ORCID,Ayari Farah12,Ferreol Paul12,Jouanneau Corentin12,Turala Artur12ORCID,Moreau Solene12,Volatier Maïté12,Aimez Vincent12ORCID,Fafard Simon12,Jaouad Abdelatif12,Darnon Maxime12ORCID,Hamon Gwenaëlle12

Affiliation:

1. Laboratoire Nanotechnologies Nanosystèmes (LN2)-CNRS UMI-3463, Université de Sherbrooke, Sherbrooke, QC J1K 0A5, Canada

2. Institut Interdisciplinaire d’Innovation Technologique (3IT), Université de Sherbrooke, Sherbrooke, QC J1K 0A5, Canada

Abstract

Improvement of triple-junction (3J) III-V/Ge solar cells efficiency is hindered by the low current produced by the top and middle cells relative to the bottom cell (Ge). This can be explained by the difficulty of characterizing, on an individual basis, the subcells. We investigate the fabrication process of multi-terminal multi-junction solar cells (MTMJSC) and its potential as a promising architecture to independently characterize subcells of multi-junction solar cells. Here, we study monolithic triple-junction solar cells, with an InGaP top cell, an InGaAs middle cell and a Ge bottom cell interconnected by tunnel junctions. We demonstrate a fabrication process for MTMJSC on commercial wafers for characterization applications purposes. I-V measurements, under illumination, of two-terminals and MTMJSC were compared to validate that the MTMJSC fabrication process does not degrade the cells’ performance. The dark current of each subcell was also measured and an ideal-diode model used to determine the subcells electrical parameters. The results suggest a method to measure the relative absorption and the opto-electrical couplings between the subcells unambiguously, through EQE and electroluminescence measurements, based on basic micro-fabrication processes.

Publisher

MDPI AG

Reference22 articles.

1. Concentration photovoltaics as light harvesters: Outlook, recent progress, and challenges;Ejaz;Sustain. Energy Technol. Assess.,2021

2. Status and challenges of multi-junction solar cell technology;Baiju;Front. Energy Res.,2022

3. Challenges in the design of concentrator photovoltaic (CPV) modules to achieve highest efficiencies;Wiesenfarth;App. Phys. Rev.,2018

4. Perspective on photovoltaic optical power converters;Fafard;J. Appl. Phys.,2021

5. Solar cell efficiency tables (Version 61);Green;Prog. Photovolt. Res. Appl.,2023

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