The BRIDGE consortium actively embodies the principles of Open Science and strictly adheres to the FAIR (Findable, Accessible, Interoperable, and Reusable) Data Management guidelines set by the European Commission. Within the scope of Work Package 5 (Networking Activities & Dissemination) and in compliance with our Horizon Europe Open Access obligations, all peer-reviewed research articles and corresponding underlying datasets produced during this 42-month twinning action are made publicly available.
To guarantee transparency, reproducibility, and sustainable data preservation beyond the project’s duration, all generated scientific outputs, pre-prints, and validated datasets, as well as future materials related to the BRIDGE project framework, are gathered in our open repository.
Explore our comprehensive data collection and open-access documents via the official:
Peer-Reviewed Journal Publications
1. Towards the optimization of a perovskite-based room temperature ozone sensor: A multifaceted approach in pursuit of sensitivity, stability, and understanding of mechanism
Authors: Aikaterini Argyrou, Rafaela Maria Giappa, Emmanouil Gagaoudakis, Vasilios Binas, Ioannis Remediakis, Konstantinos Brintakis*, Athanasia Kostopoulou*, Emmanuel Stratakis*
Journal: Small 2025, 21(6), 2404430. https://doi.org/10.1002/smll.202404430
Open access article.
Description: This work evaluates the tuning of halide content (Br/Cl ratio) and Mn-doping level in CsPbBr3-xClx microcrystals, unraveling p-type/n-type transitions and showing how Mn-doping acts similarly to surface halogen vacancies to significantly enhance O3 adsorption and sensing stability at room temperature.

2. Cs2AgBiBr6 Perovskites: Designing Stable, Sensitive and Selective Eco-friendly Ozone Sensors
Authors: Aikaterini Argyrou, Rafaela Maria Giappa, Emmanouil Gagaoudakis, Vasilios Binas, Ioannis Remediakis, Konstantinos Brintakis, Athanasia Kostopoulou*, Emmanuel Stratakis*
Journal: Advanced Sensor Research 2025, 4(8), e00018. https://doi.org/10.1002/adsr.202500018
Open access article.
Description: Highlighting the transition to lead-free, eco-friendly alternatives, this paper investigates the role of morphology (microsheets vs. microflowers) in Cs2AgBiBr6 double perovskites for room-temperature O3 sensing. Operating at a low voltage of 0.1 V, the microsheet-based sensor demonstrates exceptional selectivity against NO, H2, CO2, and CH4, maintaining robust performance under high humidity (up to 70% RH).
