The team has been developing the dielectric microscopy setups and tools required for the project. New liquids cells made of van der Waals crystals have been fabricated, which enabled the team to probe the dielectric properties of water and other molecular liquids confined inside, despite the disruptions and delays caused by the pandemic in the first part of the action. The team have comprised 5 postdoctoral researchers over the past years, who joined the group of the principal investigator in Manchester to carry out this research.
A new lab space dedicated to this project has been set up, where the two newly developed setups have been installed. They have been designed for the study of dielectric polarization and conductive properties of nanoconfined liquids and molecules. Their construction has been completed and they are now fully operational, as planned, 2D liquid cells made of various 2D crystals were successfully fabricated by the team, by transferring and stacking 2D crystals and using microfabrication techniques. The team has successfully carried out dielectric microscopy experiments of these devices, reaching the first critical objectives of the action. In particular, the team has recently obtained new breakthrough results on confined water, being able to measure for the first time the dielectric properties and conductivity in the in-plane direction – a technical challenge not achieved before. While our previous study reveal confined water is non-polarizable in the out-of-plane direction with respect to the confining surfaces, our recent experiments found that it has enhanced in-plane polarizability and conductivity, reaching superionic levels at room temperature. These findings, published in Nature in October 2025 (see www.nature.com/articles/s41586-025-09558-y) indicate the emergence of a new, 2D water phase characterized by ferroelectric-like polarizability and superionic-like conductivity with profound implications for biology, chemistry and energy science. Our investigation continues, with new results expected to be obtained in the months to come.
The team has disseminated the results related to this action in several peer-review publications and invited talks at international workshops/conferences and on social media.