Solar energy paper index

Next-Generation Tandem Photovoltaics: Role of Multinary Compound Semiconductors in Efficiency Enhancement

2026-06-29 · Economic Sciences.

One-line summary

A solar energy research paper on Next-Generation Tandem Photovoltaics: Role of Multinary Compound Semiconductors in Efficiency Enhancement.

Engineering notes

Engineering notes will be added by the Power for Solar editorial team.

Chinese explanation / 中文解读

中文解读待补充:本站会优先为光伏效率、钙钛矿太阳能电池、储能技术、太阳能热利用、BIPV、并网技术等高价值论文补充中文说明。

Original abstract

Tandem cells offer a direct path around the spectral utilisation limit of the single-junction PV devices, by using two absorbers with complementary bandgaps to capture high- and low-energy photons. This study critically explores the numerical dataset of a SCAPS-1D perovskite model in order to investigate the potential for the multinary,“lead-free perovskite absorbers for enhancing the performance of two terminal monolithic tandem perovskite solar cells. The top absorber of two double perovskite designs was either a narrow-bandgap crystalline-silicon heterojunction bottom cell with a 1.3-eV bandgap (CsSnI₃) or a wide-bandgap quaternary-substituted double perovskite with a bandgap of ~1.8 eV. The model is solved for one dimensional Poisson, carrier-continuity and drift-diffusion equations, in AM1.5G illumination at 300K. SCAPS-1D is not capable of solving a full multijunction device, so the sub-cells were calibrated separately, the spectrum transmitted through the top stack was calculated and the absorber thicknesses were swept so that the two sub-cells were close to a common short-circuit current. The perovskite/silicon design has been optimized to achieve JSC = 0.181068 mA cm⁻2 @ 550 nm (top-absorber) and VOC = 0.1812 V @ 230 µm (bottom-absorber), resulting in a FF of 0.7918 and a PCE of 0.2595. The all-perovskite design reached its optimum at 700 nm and 65 nm, respectively, with JSC = 16.91 mA cm⁻², VOC = 1.73 V, FF = 83.72% and PCE = 24.47%.”The tandem configuration achieved a 19.81% and 50.12% improvement in PCE compared to the best stand-alone bottom-cell efficiencies analyzed, for the Si-based and all-perovskite systems, respectively. The results demonstrate the usefulness of multinary composition control for the elimination of lead and bandgap allocation, voltage addition and/or spectral complementarity. Principal unresolved issues include losses due to optical reflection, recombination-junction modelling, migration of ions, long term stability and experimental manufacturability.

5.0Engineering value
7.0Research novelty
4.0Business relevance

Links and sources

Need this topic turned into a technical roadmap?

Power for Solar can prepare a custom solar energy literature review, simulation code map, dataset map, and B2B photovoltaic technology assessment.

Request B2B research

Comments

No comments yet. Be the first to share your thoughts on this paper.
Login or register to leave a comment