Latest Research in Radiation Detection and Scintillator Technologies
13 research papers · 2026 median publication year
Top Research Topics in Radiation Detection and Scintillator Technologies
- Luminescence Properties of Advanced Materials — 5 papers
- Perovskite Materials and Applications — 3 papers
- Radiation Detection and Scintillator Technologies — 2 papers
- Machine Learning in Materials Science — 1 papers
- Nonlinear Optical Materials Research — 1 papers
- Lanthanide and Transition Metal Complexes — 1 papers
Highest-Cited Papers
- Scalable Fabrication of Low‐Cost, High‐Stability Copper(I) Halide Hybrid Scintillator for High‐Performance Flexible X‐Ray Imaging
- Environment‐Regulated Crystal‐Structure Reconfiguration of Hybrid Halide Scintillators Enables Tunable STE Emission Toward Intelligent X‐Ray Imaging
- Halogen Tailoring Enables Large-Area Mn-Based Halide Single-Crystal Films with Enhanced Radioluminescence and High-Resolution X-ray Imaging
- Epitaxially Grown Li + ‐Conductive Li 0.33 La 0.5567 TiO 3 :Yb 3+ ,Er 3+ Thin Film Enabling Ion‐Migration‐Driven Modulation of Upconversion Luminescence for Potential Electro‐Optical Memory Emitter
- Dual Self-Trapped Exciton and Rare-Earth Emissions from Sb3 + /Pr3 + -Activated Metal Halide toward Plant Cultivation Lighting, Dynamic Multilevel Anti-Counterfeiting, and High-CRI WLEDs
- Formation Energy Prediction and Feature Analysis of Lead-Free Double Perovskites Based on Deep Learning
- Facile, Scalable, and High‐Yield Synthesis of a Near‐Unity Quantum Yield Zero‐Dimensional Copper Halide Cs 3 Cu 2 Cl 5 Scintillator for X‐Ray Imaging
- Synergistic effects of amino acid additives in KDP and ADP single crystals: a review of enhanced NLO performance
- Phosphonium‐Directed Synthesis of Tb/Eu Coordination Complexes for High‐Resolution X‐Ray Imaging
- Ion‐Pair Confinement Enables Through‐Space Charge Transfer for Negative Thermal Quenching Blue‐Emitting Scintillators in High‐Resolution X‐Ray Imaging
- Melt‐Processable Manganese (II)‐Based Hybrid Luminescent Glass Enables Lifetime‐Based Thermal Imaging
- Hybrid Copper(I) Iodide Scintillators: From Molecular Architecture to X‐Ray Imaging Applications
- Polymorphism and NIR Photoluminescence of Anhydrous Ytterbium(III) Acetate: Reversible Transformations of Three Polar Structures in the Temperature Range 100–593 K