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Updated: Nov 27, 2025

Surface Functionalization of Metal-Organic Frameworks for Improved Moisture Resistance
Published on: September 5, 2018
Antifungal Activity of Polyoxometalate-Ionic Liquids on Historical Brick
Katarzyna Rajkowska1, Anna Koziróg1, Anna Otlewska1
1Institute of Fermentation Technology and Microbiology, Lodz University of Technology, Wólczańska 171/173, 90-924 Lodz, Poland.
Abstract:
Moulds inhabiting mineral-based materials may cause their biodeterioration, contributing to inestimable losses, especially in the case of cultural heritage objects and architectures. Fungi in mouldy buildings may also pose a threat to human health and constitute the main etiological factor in building related illnesses. In this context, research into novel compounds with antifungal activity is of high importance. The aim of this study was to evaluate the antifungal activity of polyoxometalate-ionic liquids (POM-ILs) and their use in the eradication of moulds from historical brick. In the disc diffusion assay, all the tested POM-ILs inhibited growth of a mixed culture of moulds including Engyodontium album, Cladosporium cladosporioides, Alternaria alternata and Aspergillus fumigatus. These were isolated from the surfaces of historical brick barracks at the Auschwitz II-Birkenau State Museum in Oświęcim, Poland. POM-IL coatings on historical brick samples, under model conditions, showed that two compounds demonstrated very high antifungal activity, completely limiting mould growth and development. The antifungal activity of the POM-ILs appeared to stem from their toxic effects on conidia, as evidenced by environmental scanning transmission electron microscopy observations. The results herein indicated that POM-ILs are promising disinfectant materials for use not only on historical objects, but probably also on other mineral-based materials.
Insights
Polyoxometalate-ionic liquids (POM-ILs) effectively inhibit mould growth on historical bricks. These compounds show promise for preserving cultural heritage and preventing health issues linked to building-related fungi.
Area of Science:
- Materials Science
- Mycology
- Chemistry
Background:
- Moulds biodeteriorate mineral-based materials, causing significant losses to cultural heritage.
- Fungi in buildings pose health risks and are linked to building-related illnesses.
Purpose of the Study:
- To evaluate the antifungal activity of polyoxometalate-ionic liquids (POM-ILs).
- To assess the efficacy of POM-ILs in eradicating moulds from historical brick.
Main Methods:
- Disc diffusion assay to test antifungal activity against mould species.
- Application of POM-IL coatings on historical brick samples.
- Environmental scanning transmission electron microscopy (ESTEM) to observe effects on conidia.
Main Results:
- All tested POM-ILs inhibited the growth of various mould species, including *Engyodontium album*, *Cladosporium cladosporioides*, *Alternaria alternata*, and *Aspergillus fumigatus*.
- Two POM-IL compounds demonstrated very high antifungal activity, completely preventing mould growth on historical brick samples.
- ESTEM confirmed that POM-ILs exert toxic effects on fungal conidia.
Conclusions:
- POM-ILs exhibit significant antifungal properties against moulds found on historical building materials.
- POM-ILs are promising disinfectant agents for the conservation of cultural heritage and other mineral-based materials.
- This research highlights the potential of POM-ILs in addressing biodeterioration and health concerns associated with mould growth.
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