Randomized trial demonstrates high-resolution color X-ray imaging in complex materials, indicating new imaging technology possibilities.
Key Points
This research aims to enhance X-ray imaging capabilities by optimizing persistent radioluminescence in nanoparticles for detailed material discrimination.
Developed a persistent RL-assisted imaging technique using core-shell-shell nanoparticles.
Investigated the decay kinetics of persistent radioluminescence related to X-ray energy and color dynamics.
Utilized a flexible imaging detector that integrates CSS nanoparticles for enhanced imaging performance.
Implemented chromatic 3D imaging with a resolution that can distinguish subtle material differences at a low X-ray dose of 15.1 uGy/s.
Achieved energy-dependent persistent RL multicolor tuning within a single CSS nanoparticle framework.
Established a mechanistic insight linking X-ray energy and color dynamics, paving the way for advanced imaging designs.