The PHOTO-STEREO project has produced promising scientific results with strong potential for future impact in both academic and industrial settings. The newly developed light-driven chemical methodology offers a more sustainable alternative to traditional synthetic processes, avoiding the use of precious metals and operating under mild conditions. These features make the approach attractive for future applications in drug development, agrochemicals, and advanced materials—fields where efficiency, selectivity, and environmental responsibility are increasingly important.
To fully unlock the potential of these findings, further steps will be necessary. Additional research will help explore the full range of chemical structures that can be accessed using this method, including real-world compounds of industrial interest. Demonstration of the method at a larger scale and under continuous flow conditions will also be essential to evaluate its practical applicability in production environments.
At the same time, successful uptake beyond the academic context will likely require support in areas such as intellectual property (IP) protection, early-stage funding, and connections with potential industrial partners who can integrate the method into existing innovation pipelines. Supportive regulatory and sustainability frameworks—both at the national and European levels—can further enhance the attractiveness of such green technologies for commercial development.
In summary, while the core scientific goals of the project have been achieved, targeted follow-up actions in research, scale-up, and innovation support will be key to ensuring that PHOTO-STEREO’s results can translate into tangible benefits for society, industry, and the environment.