Completed Clean Energy Materials & Manufacturing

All-perovskite Multi-junction Solar Cells

In plain English

AI plain-English summary

Perovskite solar cells are being stacked into triple-layer devices that could convert over 37% of sunlight into electricity—a leap beyond today’s best single-layer cells. Today’s solar panels typically capture only a fraction of the solar spectrum. Multi-junction cells, which stack different materials to absorb different wavelengths, can reach higher efficiencies, but they are expensive to manufacture. This project aims to build all-perovskite triple-junction cells that are both highly efficient and potentially cheap to produce. The researchers will develop new perovskite materials, study their fundamental properties, engineer thin-film devices, and tackle the persistent problem of stability—perovskites tend to degrade quickly. If successful, these cells could make solar power far more cost-effective and space-efficient, accelerating the UK’s shift to low-carbon energy. They could be used in rooftop panels, solar farms, or even integrated into buildings and vehicles. The project also involves industrial partners, so the technology is designed for eventual manufacturing and commercial deployment. This is applied research with a clear practical goal: to give the UK industrial leadership in next-generation solar technology.

View original technical description
A major global challenge of the present epoch is transforming our energy system to become clean, secure and efficient. A major challenge for the UK is ensuring industrial leadership in low-carbon energy technologies, which will dominate the future energy market, and "securing the economic benefits of the transition to a low-carbon economy". In this prosperity partnership, we have uniquely combined pioneering academic and industrial leaders in perovskite photovoltaics and will develop the underlying materials, science and technology, which will allow us to develop the next generation of multi-junction perovskite solar cells. The ambition of the project is to go well beyond the state-of-the-art, and therefore deliver over 37% efficient triple junction perovskite solar cells. This will be possible through a combined effort of new materials development, fundamental investigations, thin-film device engineering and interface modification, and significant effort on understanding and improving materials and device stability. The major technical outputs of the project will be to deliver technology at three different stages, for beyond project downstream development and manufacturing.

View the original record at the funder ↗

Researchers

Henry Snaith (Principal Investigator)Laura Herz (Co-Investigator)

Related Research

Grants with similar aims, by meaning.

SEALPTSC Strain and Photonic Engineering Toward Stable, Efficient, and Large-scale All-perovskite Triple-junction Solar Cells
Lightweight and Flexible All-Perovskite Triple-junction Solar Cells
Development of Prototype High Efficiency Multi-Junction Organic Solar Cells
Single-Crystal Perovskite Tandem Solar Cells For High Efficiency and Low Cost
Multi-Scale Modelling of Hybrid Perovskites for Solar Cells

Original classification

Research Grant

Plain English summaries and category classifications on this site are generated by AI and may not perfectly reflect the original research.