Completed Clean Energy Materials & Manufacturing

New Materials and Devices for Photovoltaic Applications

In plain English

AI plain-English summary

Solar panels are still too expensive for the world to rely on them as a major energy source. The dominant silicon-based cells work well and last decades, but their manufacturing costs keep them from being deployed at the scale needed to replace fossil fuels. Newer thin-film technologies, using materials like cadmium telluride, offer lower costs but sacrifice efficiency and still require expensive processing. This project aims to develop "third generation" photovoltaic technologies that break that trade-off—delivering either significantly higher efficiency, much lower manufacturing costs, or both. If successful, the research could accelerate the point where solar power becomes cheap enough to install on rooftops, in solar farms, and across industrial sites without government subsidies. That shift would directly affect energy grids, reducing reliance on carbon-based fuels and improving energy security. It would also change supply chains for materials like silicon and rare metals, potentially lowering the environmental cost of panel production. The work is applied materials science and device engineering—not fundamental curiosity-driven research—so the goal is a practical, manufacturable technology that can be scaled commercially.

View original technical description
With the advent of global warming, rapidly increasing demand for energy, and concerns over the security of supply of traditional carbon based fuels the requirement for alternative, sustainable energy sources is recognised throughout the world. Photovoltaics (PVs) harvest electrical energy directly from sunlight, delivering power at the point of use and are potentially a major component of the long term solution to this growing challenge. The current market is dominated by first generation Si devices which offer good power conversion efficiencies and operational lifetimes, but remain too expensive for major deployment. Second generation thin film technologies based on materials such as cadmium telluride and copper indium gallium diselenide are also showing significant promise, however the lower device efficiencies and relatively high processing costs means that market penetration remains low. Consequently, there is a rapidly growing worldwide focus on the development of new third generation PV technologies which offer the prospect of significantly improved performance and/or low cost manufacture, thus helping to accelerate commercial exploitation and large-scale deployment. New PV technologies will require innovations in materials, concepts and devices and the unique and flexible nature of Platform Grant funding will help the Warwick group tackle this important strategic challenge.

View the original record at the funder ↗

Researchers

Timothy Jones (Principal Investigator)

Related Research

Grants with similar aims, by meaning.

Application Targeted and Integrated Photovoltaics - Enhancing UK Capability in Solar
Photovoltaics for Future Societies
SUPERGEN Photovoltaic Materials for the 21st Century
Flexible organic and hybrid solar cells utilising new photoactive materials
Advanced Device Concepts for Next-Generation Photovoltaics

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.