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◆ Solar Energy Materials and Solar Cells2026-04-04· Tandem

Improving VOC in wide bandgap (Ag,Cu) (In,Ga)Se2 solar cells for voltage-matched ACIGS/Si tandem modules

Ceren Mitmit, Matthias Diethelm, Matteo De Marzi, Nina Kochel, Joanna Maciejewska, Ajay Narasimhamurthy, A. Miszczuk, Jessica de Wild, Bart Reekmans, Bart Vermang, Julia Horstmann, Romain Carron

原始摘要(英文原文)· Original abstract
The open-circuit voltage (V OC ) deficit in wide-bandgap (Ag,Cu) (In,Ga)Se 2 (ACIGS) absorbers remains as the main limitation for their application in tandem solar cells. The roles of absorber growth temperature, surface treatment, and rubidium fluoride (RbF) post-deposition treatment (PDT) on the V OC of wide-bandgap ACIGS solar cells on transparent substrates and their integration into voltage-matched two-terminal ACIGS/Si tandems are investigated. Growth below 415 °C leads to poor morphology, Cu deficiency at the rear contact, and diode non-idealities, whereas higher temperatures improve film quality and V OC . An ammonia-based absorber rinsing step reduces V OC at growth temperature 415 °C and low Rb doses, whereas DI-water rinsing better preserves V OC and boosts short-circuit current density (J SC ). V OC -loss analysis based on the photoluminescence quantum yield (PLQY) is used to separate absorber bulk and interface contributions which are challenging to distinguish in complete solar cells. Quasi-Fermi-level splitting and diffusion-length estimates reveal that non-radiative recombination dominates V OC -loss, limiting the benefit of Ga back-grading. Building on these insights, we present the first experimental demonstration of a voltage- and area-matched two-terminal bifacial ACIGS/Si tandem module, implementing a fully laser-interconnected top ACIGS submodule. Voltage matching is achieved at 10 % rear illumination, with power density generation continuing to increase linearly beyond the voltage matching condition. In contrast to the more frequent series-connected tandems constrained by current matching conditions, the circuitry-2T architecture enables additional power gains under varying bifacial illumination. • Wide-bandgap ACIGS on TCO are V OC limited by non-radiative recombination. • Discrimination of bulk and front interface recombinations by PLQY-based analysis. • Investigation of growth temperature, alkali PDT and rinsing on recombination mechanisms. • First demonstration of voltage- and area-matched 2T bifacial ACIGS/Si tandem module. • Voltage-matched circuitry-2T tandems very resilient to varying bifacial illumination.
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Improving VOC in wide bandgap (Ag,Cu) (In,Ga)Se2 solar cells for voltage-matched ACIGS/Si tandem modules — 科研速览 Science Skim