Large-scale self-assembled nanophotonic scintillators for X-ray imaging
Martin-Monier L, Pajovic S, Abebe MG, Chen J, Vaidya S, Min S, Choi S, Kooi SE, Maes B, Hu J, Soljačić M, Roques-Carmes C. 2025. Large-scale self-assembled nanophotonic scintillators for X-ray imaging. Nature Communications. 16, 5750.
Download
No fulltext has been uploaded. References only!
URL
Journal Article
| Published
| English
Scopus indexed
Author
Martin-Monier, Louis;
Pajovic, Simo;
Abebe, Muluneh G.;
Chen, Joshua;
Vaidya, Sachin;
Min, Seokhwan;
Choi, Seou;
Kooi, Steven E.;
Maes, Bjorn;
Hu, Juejun;
Soljačić, Marin;
Roques-Carmes, CharlesISTA
All
All
Abstract
Scintillators convert X-ray energy into visible light and are critical for imaging technologies. Their widespread use relies on scalable, high-quality manufacturing methods. Nanophotonic scintillators, featuring wavelength-scale nanostructures, can offer improved emission properties such as higher light yield, shorter decay times, and enhanced directionality. However, achieving scalable fabrication of these structures remains challenging. Here, we present a scalable fabrication method for large-area nanophotonic scintillators based on the self-assembly of chalcogenide glass photonic crystals. This technique enables the production of nanophotonic scintillators over wafer-scale areas, achieving a six-fold enhancement in light yield compared to unpatterned scintillators. By studying surface nanofabrication disorder, we show its impact on imaging performance and provide a route towards scintillation enhancements without compromising resolution. We demonstrate the practical applicability of our nanophotonic scintillators through X-ray imaging of biological and inorganic specimens. Our results could enable the industrial implementation of a new generation of nanophotonic-enhanced scintillators.
Publishing Year
Date Published
2025-07-01
Journal Title
Nature Communications
Publisher
Springer Nature
Volume
16
Article Number
5750
eISSN
IST-REx-ID
Cite this
Martin-Monier L, Pajovic S, Abebe MG, et al. Large-scale self-assembled nanophotonic scintillators for X-ray imaging. Nature Communications. 2025;16. doi:10.1038/s41467-025-60953-5
Martin-Monier, L., Pajovic, S., Abebe, M. G., Chen, J., Vaidya, S., Min, S., … Roques-Carmes, C. (2025). Large-scale self-assembled nanophotonic scintillators for X-ray imaging. Nature Communications. Springer Nature. https://doi.org/10.1038/s41467-025-60953-5
Martin-Monier, Louis, Simo Pajovic, Muluneh G. Abebe, Joshua Chen, Sachin Vaidya, Seokhwan Min, Seou Choi, et al. “Large-Scale Self-Assembled Nanophotonic Scintillators for X-Ray Imaging.” Nature Communications. Springer Nature, 2025. https://doi.org/10.1038/s41467-025-60953-5.
L. Martin-Monier et al., “Large-scale self-assembled nanophotonic scintillators for X-ray imaging,” Nature Communications, vol. 16. Springer Nature, 2025.
Martin-Monier L, Pajovic S, Abebe MG, Chen J, Vaidya S, Min S, Choi S, Kooi SE, Maes B, Hu J, Soljačić M, Roques-Carmes C. 2025. Large-scale self-assembled nanophotonic scintillators for X-ray imaging. Nature Communications. 16, 5750.
Martin-Monier, Louis, et al. “Large-Scale Self-Assembled Nanophotonic Scintillators for X-Ray Imaging.” Nature Communications, vol. 16, 5750, Springer Nature, 2025, doi:10.1038/s41467-025-60953-5.
All files available under the following license(s):
Creative Commons Attribution 4.0 International Public License (CC-BY 4.0):
Link(s) to Main File(s)
Access Level
Closed Access
Export
Marked PublicationsOpen Data ISTA Research Explorer
Sources
arXiv 2410.07141
